Crane-suspended hydraulic vibratory pile-driving and extraction machinery manufacture
- Lifecycle status
- Candidate
- Content maturity
- Authored methodology
- Current version
- 0.1.0Last updated
- Readiness
- Review required
Methodology and translation states come from the source record; publishing this website does not change their review status.
Content languages
Status, classification and source details
Readiness
- Warnings methodology_not_reviewed Authored methodology is candidate guidance and still requires methodology review.
Classification mapping
Source
1. Scope and Applicability
This PCR covers manufacture of complete crane-suspended, externally hydraulically powered vibratory pile-driving and pile-extraction heads. Separate fixed/variable eccentric layouts and actual clamp, hose and suppressor configurations. Include delivered vibration case, eccentric/gear/shaft system, hydraulic motors, bearing system, suspension/suppressor and the specified installed clamp and delivered hose set. The reference is a complete configured head rather than a head-only spare or a whole crane/powerpack system. Exclude separately sold spare parts, crane/excavator manufacture, external powerpack manufacture, diesel impact hammers, hydraulic impact hammers, excavator-mounted attachments, self-propelled piling rigs, snow machinery and other soil/ore machinery. These are narrower boundaries than CPC 44430. Site pile installation/extraction, soil and pile materials, penetration rate, vibration/noise at customer sites, site fuel, maintenance and end-of-life are outside manufacture. Factory acceptance testing and its actual attributable utilities, fluids, wastes and emissions remain inside. No piling service or assumed lifetime is included.
2. Product Category Identity
| Field | Value |
|---|---|
| canonical_pcr_id | pcr.metal-products-machinery-and-equipment.special-purpose-machinery.non-self-propelled-pile-driving-and-extraction-machinery |
| classification_refs | CPC 3.0 44430; narrower category context, not an accepted mapping |
| covered_products | Complete configured crane-suspended hydraulic vibratory pile-driving/extraction heads |
| excluded_products | Carrier and external powerpack, spare parts, impact hammers, excavator-mounted heads, self-propelled rigs and other CPC44430 machinery |
| representative_product | One accepted complete configured suspended head with declared clamp/hose/retained-fluid inclusion |
| production_route | Receive steel stock or finished modules; actual case/frame fabrication and joining; conditional finishing; eccentric/gear/bearing, hydraulic and suppressor/clamp assembly; factory testing |
| market_state | New accepted configured machine at factory gate; no attached pile, carrier or powerpack; protective packaging separately inventoried |
3. Reference Flow
| Field | Value |
|---|---|
| What | Provide the declared suspended hydraulic vibratory pile-driving/extraction machine |
| How much | 1 kg of the same complete accepted configured machine using measured net mass M |
| How well | Meet the actual drawings and factory acceptance specification. Record eccentric synchronization and balance, bearing lubrication, hydraulic leak and clamp hold checks, suppression/suspension assembly inspection and control/interlock checks where applicable. Use declared test load, pressure, duration and calibrated instruments. Catalogue eccentric moment, frequency, force, amplitude and line-pull are configuration data, not default factory acceptance limits or manufacturing amounts. |
| How long or cycle | One manufacturing delivery; no assumed operating life or pile-installation cycle |
| reference_flow_link | finished_machine |
| Field | Value |
|---|---|
| Reference amount | 1 |
| Reference product flow | Pile-drivers and pile-extractors, snow-ploughs and snow-blowers, other moving, grading, levelling, scraping, excavating, tamping, compacting, extracting or boring machinery, not self-propelled, for earth, minerals or ores, machinery n.e.c. for public works, building or the like 4db9a5e3-c264-4b56-baab-4c6bf19612fe |
| Reference flow property | Mass 93a60a56-a3c8-11da-a746-0800200b9a66 |
| Reference unit group | Units of mass 93a60a57-a4c8-11da-a746-0800200c9a66 |
| Reference unit | kg |
| Required qualifiers | model/serial or lot; suspended externally hydraulic configuration; eccentric/gear arrangement; motor/bearing/suppressor/suspension; clamp type/count and hose length/inclusion; control pendant gate; clean unloaded state; retained oil/grease state; measured M; manufacturer/site and period; purchased gates; testing utility source and actual conditions; covered stages |
Weigh the exact accepted delivered configuration on calibrated scales. Catalogue dynamic weight, total weight excluding clamps/hoses, suspended weight and combined powerpack-system weight are different bases and do not replace M. One-kilogram normalization is not a functional equivalence claim between pile/soil conditions or hammer configurations.
4. Measurement and Unit Rules
| rule_id | Applies to | Required property | Required unit | Rule |
|---|---|---|---|---|
reference_mass | reference product | Mass 93a60a56-a3c8-11da-a746-0800200b9a66 | kg | M = accepted net mass of one complete machine of the same configuration in kg; collect using cp_mass. |
energy_units | electricity rows | Net calorific value 93a60a56-a3c8-11da-a746-0800200c9a66 | MJ | Preserve the meter unit; convert kWh to MJ using exactly 1 kWh = 3.6 MJ. Do not interpret the electricity property name as a combustion inventory. |
volume_units | groundwater rows | Volume 93a60a56-a3c8-22da-a746-0800200c9a66 | m3 | Retain measured volume and its conditions; do not invent gas density, water density or calorific value to switch to mass or energy. |
5. System Boundary
Boundary Abstraction
| Field | Value |
|---|---|
| declared_starting_condition | Materials and configured components received at declared supplier gates, with no implicit upstream steelmaking or component fabrication in foreground |
| starting_condition_role | Manufacturing input boundary for an accepted complete machine |
| product_classification_scope | Crane-suspended hydraulic vibratory pile-driving/extraction heads within CPC 44430 context |
| recursive_input_rule | A purchased complete machine used as an input is a separately declared upstream product. Do not recursively regenerate this category; distinguish new production from refurbishment. |
| upstream_dataset_requirement | Link input-specific upstream datasets matching material, finished-component gate, geography, voltage and treatment state. Missing links remain disclosed coverage gaps. |
| disclosure | Report foreground factory stages, outsourced operations, component content, incoming transport coverage, protective packaging gate, capital-equipment policy and every exclusion; no complete cradle-to-gate claim without verified upstream and logistics closure. |
| rule_id | applies_to | rule | source_ids |
|---|---|---|---|
manufacturing_gate | foreground | Include every actual operation and attributable rework from declared received inputs through factory acceptance; distinguish purchased parts from site fabrication to prevent duplication. Use documented route records. | |
conditional_finish | finishing | Activate only documented finishing operations and chemical recipes. Manufacturer examples establish possible routes, not universal requirements or recipes. | |
exclude_piling_site | piling_use | Keep soil and piles, site driving/extraction, site fuel/noise/vibration and maintenance/disposal outside manufacture. Include actual factory testing and measured releases; no piling service is included. |
6. Process Inventory Structure
Process Map
| process_id | process_name | inclusion | inclusion_condition | role | quantitative_reference |
|---|---|---|---|---|---|
forming | Stock cutting, forming and machining | conditional | Only when the site fabricates these parts; otherwise record purchased finished parts separately | foreground manufacturing | per 1 kg reference flow; collected per one accepted finished machine |
joining | Structural welding and dressing | conditional | Only when the site joins structural parts by welding | foreground manufacturing | per 1 kg reference flow; collected per one accepted finished machine |
wet_surface | Aqueous cleaning and preparation | conditional | Only when aqueous cleaning or conversion treatment is actually performed; activate individual rows from the documented recipe | foreground manufacturing | per 1 kg reference flow; collected per one accepted finished machine |
powder_finish | Powder application and curing | conditional | Only when actual finishing uses powder; electrical curing rows only for actual electrically cured powder | foreground manufacturing | per 1 kg reference flow; collected per one accepted finished machine |
assembly | Configured machinery assembly | required | Every accepted complete machine; activate component rows only when actually installed | foreground manufacturing | per 1 kg reference flow; collected per one accepted finished machine |
acceptance | Factory acceptance and net-mass determination | required | Every accepted complete machine | foreground manufacturing | per 1 kg reference flow; collected per one accepted finished machine |
packaging | Shipment protection at factory gate | conditional | Only when shipment protection is inside the declared delivery gate; disclose its exclusion otherwise | foreground manufacturing | per 1 kg reference flow; collected per one accepted finished machine |
Process records are separate contributors to one final accepted output, not seven separately traded reference products. Retain traceable internal-part transfer and bill-of-material records; internal transfers cancel within this foreground and do not receive duplicated upstream burdens. The cards below are explicit route-conditioned exchanges. Add each actual additional part, chemical, fuel, packaging piece, wastewater stream or measured elementary substance as its own identified row; absence of a card is not a cut-off permission. For outsourced finishing, replace site chemistry and energy with the exact purchased service or finished-part record and disclose its coverage.
Process: Stock cutting, forming and machining (forming)
Inputs
Product flows
Hot-rolled non-alloy steel sheet (steel_sheet)
Include only sheet stock actually issued for the vibration-case or suppressor frame. Record grade, width, thickness and incoming surface treatment; weigh issued stock less unopened returns. The confirmed stock identity remains unresolved; do not substitute contradictory alloy/non-alloy records.
- Selected flow: Hot-rolled non-alloy steel sheet
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_forming.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_forming
Alternating current (forming_electricity)
Meter cutting, drilling, bending and machining performed on site, including attributable extraction equipment. This UUID applies only to grid-average user-side 1–35 kV supply at the purchased gate; internal low-voltage use is not another purchased input. Other supply conditions require another verified identity.
- Selected flow: Alternating current
3d76981f-964a-4865-b588-0e067a2a1163 - Flow property / unit: Net calorific value
93a60a56-a3c8-11da-a746-0800200c9a66/ MJ - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_forming.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_forming
Outputs
Waste flows
Post-industrial steel scrap (steel_offcut)
Weigh segregated steel offcuts leaving the factory untreated. Record alloy fractions and destination; internal reuse is not an exported waste and oily swarf needs its own row.
- Selected flow: Post-industrial steel scrap
c143745d-be4f-4d8f-b403-2dcbfe685349 - Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_forming.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_forming
Process: Structural welding and dressing (joining)
Inputs
Product flows
Flux Cored Wire (flux_wire)
Only for documented all-position single-pass self-shielded flux-cored carbon-steel welding consistent with this identity. Weigh consumed wire by spool issue and return; other welding consumables are separately identified, not substituted into this row.
- Selected flow: Flux Cored Wire
1b74a576-06e0-4764-97ce-11a73f8a4752 - Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_joining.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_joining
Copper-coated solid carbon-steel welding wire (solid_wire)
Only for the documented solid-wire route. Record wire designation and consumed mass; do not apply the flux-cored wire UUID.
- Selected flow: Copper-coated solid carbon-steel welding wire
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_joining.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_joining
Argon gas for welding (argon)
Only when pure argon is actually supplied and consumed; cylinder net mass records establish quantity. An argon/carbon-dioxide blend is a different formulated gas and must be a separate row with its composition.
- Selected flow: Argon gas for welding
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_joining.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_joining
Alternating current (joining_electricity)
Meter welding, weld dressing and extraction equipment; apply the same purchased supply condition as forming_electricity. Do not count the common factory meter twice.
- Selected flow: Alternating current
3d76981f-964a-4865-b588-0e067a2a1163 - Flow property / unit: Net calorific value
93a60a56-a3c8-11da-a746-0800200c9a66/ MJ - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_joining.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_joining
Process: Aqueous cleaning and preparation (wet_surface)
Inputs
Product flows
Sodium hydroxide cleaning reagent, supplied concentration declared (caustic)
Only if the actual cleaning recipe uses sodium hydroxide. Collect supplied solution mass and concentration without treating it as pure substance mass; 95–98% grade identity is not applied to unknown-concentration baths. Each additional cleaning chemical needs its own atomic row.
- Selected flow: Sodium hydroxide cleaning reagent, supplied concentration declared
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_wet_surface.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_wet_surface
Process Water (supplied_water)
Purchased process water for washing and rinsing only; weigh or obtain supplier water mass records. Record treatment state and supplier gate; never identify this technosphere input as a water resource or count the supplier extraction again.
- Selected flow: Process Water
94a04f7e-2d5c-41f0-b182-d54a3b373a02 - Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_wet_surface.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_wet_surface
Alternating current (wet_electricity)
Meter bath circulation, rinsing and water treatment within the declared boundary, under the purchased supply condition already stated.
- Selected flow: Alternating current
3d76981f-964a-4865-b588-0e067a2a1163 - Flow property / unit: Net calorific value
93a60a56-a3c8-11da-a746-0800200c9a66/ MJ - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_wet_surface.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_wet_surface
Elementary flows
ground water (well_water)
Only for groundwater abstracted directly by this foreground site for its baths and rinses. Meter gross abstraction in m3 and identify country and well; Resources / Resources from water / Renewable material resources from water. No scarcity class is asserted. Do not also record the same water as purchased process water.
- Selected flow: ground water
4f462198-40cd-4184-8733-86648a20dc3f - Flow property / unit: Volume
93a60a56-a3c8-22da-a746-0800200c9a66/ m3 - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_wet_surface.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_wet_surface
Outputs
Waste flows
Spent aqueous alkaline cleaning solution (alkaline_effluent)
Only when this single liquid waste stream leaves the boundary. Measure solution mass, pH and constituents and identify receiving treatment; it is a waste transfer, not an elementary water emission.
- Selected flow: Spent aqueous alkaline cleaning solution
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_wet_surface.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_wet_surface
Process: Powder application and curing (powder_finish)
Inputs
Product flows
Powder Coating (powder)
For the actual dry powder formulation only. Reconcile fresh powder and external returns with recovered powder circulation; do not count internal recirculation as another purchased input. Record binder and colour, without assuming polyester.
- Selected flow: Powder Coating
6e3010f9-fbd3-48f6-95fc-c1b38d2800d2 - Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_powder_finish.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_powder_finish
Alternating current (powder_electricity)
Meter powder application, compressed-air generation attributable to this operation and electrically heated curing when present, with the stated purchased supply condition.
- Selected flow: Alternating current
3d76981f-964a-4865-b588-0e067a2a1163 - Flow property / unit: Net calorific value
93a60a56-a3c8-11da-a746-0800200c9a66/ MJ - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_powder_finish.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_powder_finish
Outputs
Waste flows
Powder coating waste (powder_residue)
This identity applies only to dry overspray at a Chinese plant; other geography needs a separately verified identity. Weigh only collected dry overspray exported as waste; reclaimed powder reused internally is excluded. Keep solid powder separate from wastewater or liquid primer sludge.
- Selected flow: Powder coating waste
9aa53a82-5462-400e-9096-efab7718201f - Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_powder_finish.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_powder_finish
Process: Configured machinery assembly (assembly)
Inputs
Product flows
Steel roller bearing (roller_bearing)
Record only this specific installed bearing type and mass; do not use a wind-turbine pitch bearing or a bearing cage identity.
- Selected flow: Steel roller bearing
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_assembly.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_assembly
Carbon-steel bolt (fastener)
Record grade, coating and mass of installed bolts; nuts and washers are separately recorded if present and must not be merged into this bolt row.
- Selected flow: Carbon-steel bolt
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_assembly.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_assembly
Hydraulic Fluid (hydraulic_oil)
Only for the actual finished hydraulic oil compatible with the confirmed distilled/hydrogenated/refined supply route. Record grade and base-oil origin; collect new fill plus unrecovered testing consumption, excluding fluid already supplied in purchased motor/clamp/hose modules.
- Selected flow: Hydraulic Fluid
eafff56c-3487-4345-9f24-00429f61c556 - Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_assembly.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_assembly
Alternating current (assembly_electricity)
Meter assembly tools, lifts and attributable local utilities, with the stated purchased supply condition. Include rework attributable to accepted machines.
- Selected flow: Alternating current
3d76981f-964a-4865-b588-0e067a2a1163 - Flow property / unit: Net calorific value
93a60a56-a3c8-11da-a746-0800200c9a66/ MJ - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_assembly.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_assembly
Finished steel vibration-case housing (vibration_case)
One empty housing as delivered, without internal gears, shafts, bearings or motors. Record steel grade, machining/coating state and mass. If fabricated on site, use its stock and actual operations instead of this purchased input.
- Selected flow: Finished steel vibration-case housing
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_assembly.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_assembly
Finished steel eccentric weight (eccentric)
Identify one finished eccentric weight, grade, machining/heat-treatment state and mass; count actual matched weights separately in BOM. A complete rotor module cannot also receive its constituent weight input. Manufacturer steel/machining description does not prescribe alloy or heat treatment.
- Selected flow: Finished steel eccentric weight
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_assembly.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_assembly - Sources:
bruce-vibratory-hammer
Finished steel eccentric synchronizing gear (sync_gear)
One finished gear with supplier-confirmed grade, tooth geometry and delivered treatment. Record measured mass and synchronization layout; exclude gears already included in a bought completed gearbox.
- Selected flow: Finished steel eccentric synchronizing gear
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_assembly.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_assembly - Sources:
bruce-vibratory-hammer
Finished steel eccentric drive shaft (drive_shaft)
Record one shaft geometry, steel grade, delivered machining/treatment and mass. A bought eccentric-shaft module requires its own combined physical identity instead of counting this shaft again.
- Selected flow: Finished steel eccentric drive shaft
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_assembly.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_assembly - Sources:
bruce-vibratory-hammer
Complete hydraulic rotary drive motor (hydraulic_motor)
One complete delivered hydraulic drive motor; record displacement, included case and fittings, and mass. It is distinct from an electric motor or a linear hydraulic cylinder.
- Selected flow: Complete hydraulic rotary drive motor
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_assembly.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_assembly - Sources:
bruce-vibratory-hammer
Complete steel hydraulic pile-clamp assembly (pile_clamp)
Record actual installed clamp type, jaw arrangement, included cylinder/valve content and mass. A complete clamp includes its delivered cylinder; do not count that cylinder again. Alternative tube/universal clamp configurations are separate datasets.
- Selected flow: Complete steel hydraulic pile-clamp assembly
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_assembly.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_assembly - Sources:
bruce-vibratory-hammer
Complete hydraulic pile-clamp cylinder (clamp_cylinder)
Only a cylinder supplied separately for assembly into a clamp not already recorded complete. Record bore/stroke, seal and check-valve inclusion and mass; a machined cylinder barrel is not a complete cylinder.
- Selected flow: Complete hydraulic pile-clamp cylinder
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_assembly.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_assembly - Sources:
bruce-vibratory-hammer
Finished rubber vibration-isolator element (elastomer)
One finished isolator with supplier-confirmed rubber formulation, metal insert inclusion and measured mass; no assumed natural/synthetic polymer. Record actual number and layout. Rubber waste is not a purchased isolator.
- Selected flow: Finished rubber vibration-isolator element
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_assembly.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_assembly - Sources:
bruce-vibratory-hammer
Finished steel vibration-suppressor frame (suppressor_frame)
Record bare frame, steel grade, attachment interface and delivered state. Exclude elastomers, lifting link and vibration case already separately inventoried. Site-fabricated frame uses its stock and operation records instead.
- Selected flow: Finished steel vibration-suppressor frame
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_assembly.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_assembly
Finished steel suspension lifting link (lifting_eye)
One delivered lifting link with drawing, grade and actual mass. Separate sling/crane accessories outside delivery. Trace actual acceptance inspection without imposing an invented load factor.
- Selected flow: Finished steel suspension lifting link
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_assembly.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_assembly
Finished steel-wire-reinforced rubber hydraulic hose assembly (hose)
One configured hose with actual length, rubber formulation, reinforcement and fitting inclusion. Count delivered hoses only, including their retained fluid state in M; external powerpack hoses outside delivery are excluded.
- Selected flow: Finished steel-wire-reinforced rubber hydraulic hose assembly
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_assembly.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_assembly
Complete hydraulic distribution manifold block (manifold)
Identify one finished configured distribution manifold with actual valve/fitting inclusion and mass; do not duplicate valves already included in a complete clamp/motor.
- Selected flow: Complete hydraulic distribution manifold block
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_assembly.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_assembly
Complete pile-hammer remote-control pendant (pendant)
Only when the delivered gate includes this finished controller, with declared cable/connectors and measured mass; do not assume the external powerpack controller belongs to the head.
- Selected flow: Complete pile-hammer remote-control pendant
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_assembly.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_assembly - Sources:
bruce-vibratory-hammer
Finished gear lubricating oil, supplier grade declared (gear_oil)
Only actual gear/bearing lubricant matching supplier formulation. Weigh fresh issue minus unused returns, and distinguish consumption from retained delivery oil; base oil or hydraulic oil does not identify the finished lubricant. Grease, if used, requires its own composition-specific row.
- Selected flow: Finished gear lubricating oil, supplier grade declared
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_assembly.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_assembly
Process: Factory acceptance and net-mass determination (acceptance)
Inputs
Product flows
Alternating current (test_electricity)
Meter the electrically powered hydraulic test stand and actual clamp hold/leak, motor/gear synchronization, balance, suppression and control checks. Record load, oil pressure/flow/temperature, duration and rework. Factory test-stand supply is attributable equipment use, not external powerpack manufacture. Diesel-powered factory stands require separate fuel and measured emission rows before completeness; no field energy is counted.
- Selected flow: Alternating current
3d76981f-964a-4865-b588-0e067a2a1163 - Flow property / unit: Net calorific value
93a60a56-a3c8-11da-a746-0800200c9a66/ MJ - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_acceptance.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_acceptance
Outputs
Product flows
Pile-drivers and pile-extractors, snow-ploughs and snow-blowers, other moving, grading, levelling, scraping, excavating, tamping, compacting, extracting or boring machinery, not self-propelled, for earth, minerals or ores, machinery n.e.c. for public works, building or the like (finished_machine)
One kilogram normalizes the same accepted complete configured suspended hydraulic head. Include delivered case, eccentric drive, bearing, motor, suppressor/suspension, specified installed clamp, hose and controller plus declared retained fluids. Exclude pile/test fixture, crane, external powerpack, loose accessories and transport packaging. Document assembly/module inclusions so internal parts are not counted twice.
- Selected flow: Pile-drivers and pile-extractors, snow-ploughs and snow-blowers, other moving, grading, levelling, scraping, excavating, tamping, compacting, extracting or boring machinery, not self-propelled, for earth, minerals or ores, machinery n.e.c. for public works, building or the like
4db9a5e3-c264-4b56-baab-4c6bf19612fe - Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: 1 kg
- Value mode:
fixed_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_mass
Waste flows
Waste mineral hydraulic oil from factory tests (test_oil_waste)
Only segregated spent mineral hydraulic oil leaving factory test systems as waste. Weigh and characterize water, solids and waste destination; recycled/retained oil is not exported waste. Other spent fluids remain separate rows.
- Selected flow: Waste mineral hydraulic oil from factory tests
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_acceptance.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_acceptance
Process: Shipment protection at factory gate (packaging)
Inputs
Product flows
Polyethylene film (pack_film)
Only when polyethylene film actually accompanies shipment. Weigh film applied and waste separately; it contributes to inventory but not accepted net machine mass.
- Selected flow: Polyethylene film
e64eb06c-6dc9-45f1-b003-3dc6c44b27e2 - Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_packaging.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_packaging
Corrugated paperboard protective pad (pack_board)
Only where used; record grade, recycled content and mass. A specified fibre-mixture box is not assumed to represent this unspecified protective pad.
- Selected flow: Corrugated paperboard protective pad
- Flow property / unit: Mass
93a60a56-a3c8-11da-a746-0800200b9a66/ kg - Amount rule: Apply normalize_mass to q_item; reference_mass; cp_packaging.
- Value mode:
calculated_value - Specificity:
product_specific - Normalization basis: per 1 kg reference flow; collected per one accepted finished machine
- Basis kind:
reference_flow - Evidence kind:
calculated_from_collection - Collection protocol:
cp_packaging
7. Allocation and Co-product Handling
| rule_id | applies_to | rule | source_ids |
|---|---|---|---|
direct_attribution | shared_operations | Use job tickets and submetering before allocation. Where a common meter remains, require a measured causal driver such as machine-hours for the identified operation, with all participating jobs and idle load disclosed; divide the attributable quantity by accepted units of the same configuration before mass normalization. | ghg-product-allocation-2011 |
coproduct_decision | saleable_outputs | Do not assume scrap is a co-product. Disclose destination and legal/product status. If multiple saleable co-products actually occur, seek subdivision; justify a physical relation or, when unavailable, documented economic/other allocation with sensitivity. No universal mass share or avoided-steel credit is prescribed. | ghg-product-allocation-2011 |
rework_scrap | manufacturing_losses | Retain rework and rejected-unit burdens attributable to the accepted reporting batch. Record recovered internal material once and exported wastes separately. Disclose upstream recycled-content method and any downstream treatment separately to prevent double credits. |
8. Foreground Data Collection, Calculation, and Quality Rules
Data Collection Protocols
| protocol_id | process_id | flow_role | record_type | raw_fields | collection_method | unit | frequency | temporal_coverage | site_scope | aggregation_rule | quality_evidence |
|---|---|---|---|---|---|---|---|---|---|---|---|
cp_mass | acceptance | accepted net mass | weighing | model; configuration; serial number; accepted net mass M | Weigh the accepted complete machine on a calibrated scale, excluding transport packaging; reconcile the same configuration and acceptance record. | kg | each acceptance | complete reporting batch | same model and configuration | accepted net mass per machine | calibration, weighing and signed acceptance records |
cp_forming | forming | Stock cutting, forming and machining | meter_and_issue_records | job and configuration; accepted unit count; each row-specific issued/returned amount and original unit; constituent/grade; meter readings; allocation driver; waste destination; route conditions | For each atomic row, use calibrated meters, weighed issue/returns, supplier receipts and disposal tickets. Preserve property: kg for mass, MJ from electricity meters, m3 for directly abstracted groundwater. Purchased-water mass is not converted to volume without measured density and conditions. Reconcile stage utility totals with the factory bill, and component/retained-fluid inclusion with the net-mass record. | row-specific kg, MJ, m3 | each job and meter interval | complete same-configuration batch in reporting period; disclose seasonality and mixed lines | declared factory, outsourced and purchased gates | attributable row amount / accepted machines of the same configuration | calibration, supplier composition, job, allocation and disposal evidence |
cp_joining | joining | Structural welding and dressing | meter_and_issue_records | job and configuration; accepted unit count; each row-specific issued/returned amount and original unit; constituent/grade; meter readings; allocation driver; waste destination; route conditions | For each atomic row, use calibrated meters, weighed issue/returns, supplier receipts and disposal tickets. Preserve property: kg for mass, MJ from electricity meters, m3 for directly abstracted groundwater. Purchased-water mass is not converted to volume without measured density and conditions. Reconcile stage utility totals with the factory bill, and component/retained-fluid inclusion with the net-mass record. | row-specific kg, MJ, m3 | each job and meter interval | complete same-configuration batch in reporting period; disclose seasonality and mixed lines | declared factory, outsourced and purchased gates | attributable row amount / accepted machines of the same configuration | calibration, supplier composition, job, allocation and disposal evidence |
cp_wet_surface | wet_surface | Aqueous cleaning and preparation | meter_and_issue_records | job and configuration; accepted unit count; each row-specific issued/returned amount and original unit; constituent/grade; meter readings; allocation driver; waste destination; route conditions | For each atomic row, use calibrated meters, weighed issue/returns, supplier receipts and disposal tickets. Preserve property: kg for mass, MJ from electricity meters, m3 for directly abstracted groundwater. Purchased-water mass is not converted to volume without measured density and conditions. Reconcile stage utility totals with the factory bill, and component/retained-fluid inclusion with the net-mass record. | row-specific kg, MJ, m3 | each job and meter interval | complete same-configuration batch in reporting period; disclose seasonality and mixed lines | declared factory, outsourced and purchased gates | attributable row amount / accepted machines of the same configuration | calibration, supplier composition, job, allocation and disposal evidence |
cp_powder_finish | powder_finish | Powder application and curing | meter_and_issue_records | job and configuration; accepted unit count; each row-specific issued/returned amount and original unit; constituent/grade; meter readings; allocation driver; waste destination; route conditions | For each atomic row, use calibrated meters, weighed issue/returns, supplier receipts and disposal tickets. Preserve property: kg for mass, MJ from electricity meters, m3 for directly abstracted groundwater. Purchased-water mass is not converted to volume without measured density and conditions. Reconcile stage utility totals with the factory bill, and component/retained-fluid inclusion with the net-mass record. | row-specific kg, MJ, m3 | each job and meter interval | complete same-configuration batch in reporting period; disclose seasonality and mixed lines | declared factory, outsourced and purchased gates | attributable row amount / accepted machines of the same configuration | calibration, supplier composition, job, allocation and disposal evidence |
cp_assembly | assembly | Configured machinery assembly | meter_and_issue_records | job and configuration; accepted unit count; each row-specific issued/returned amount and original unit; constituent/grade; meter readings; allocation driver; waste destination; route conditions | For each atomic row, use calibrated meters, weighed issue/returns, supplier receipts and disposal tickets. Preserve property: kg for mass, MJ from electricity meters, m3 for directly abstracted groundwater. Purchased-water mass is not converted to volume without measured density and conditions. Reconcile stage utility totals with the factory bill, and component/retained-fluid inclusion with the net-mass record. | row-specific kg, MJ, m3 | each job and meter interval | complete same-configuration batch in reporting period; disclose seasonality and mixed lines | declared factory, outsourced and purchased gates | attributable row amount / accepted machines of the same configuration | calibration, supplier composition, job, allocation and disposal evidence |
cp_acceptance | acceptance | Factory acceptance and net-mass determination | meter_and_issue_records | job and configuration; accepted unit count; each row-specific issued/returned amount and original unit; constituent/grade; meter readings; allocation driver; waste destination; route conditions; test fixture excluded from M; electric/diesel test stand source; test load and duration; hydraulic pressure, flow and temperature; clamp holding and leakage; eccentric synchronization/balance; suppression/suspension and control inspection; lubricant issue/return/recovery and retained-fluid state | For each atomic row, use calibrated meters, weighed issue/returns, supplier receipts and disposal tickets. Preserve property: kg for mass, MJ from electricity meters, m3 for directly abstracted groundwater. Purchased-water mass is not converted to volume without measured density and conditions. Reconcile stage utility totals with the factory bill, and component/retained-fluid inclusion with the net-mass record. Track shared hydraulic bench energy by recorded run/time/load and its metered total; cancel recirculating oil transfers and count new supply and waste once. Keep signed configuration-specific acceptance results; do not infer site performance or generic numeric test limits. | row-specific kg, MJ, m3 | each job and meter interval | complete same-configuration batch in reporting period; disclose seasonality and mixed lines | declared factory, outsourced and purchased gates | attributable row amount / accepted machines of the same configuration | calibration, supplier composition, job, allocation and disposal evidence |
cp_packaging | packaging | Shipment protection at factory gate | meter_and_issue_records | job and configuration; accepted unit count; each row-specific issued/returned amount and original unit; constituent/grade; meter readings; allocation driver; waste destination; route conditions | For each atomic row, use calibrated meters, weighed issue/returns, supplier receipts and disposal tickets. Preserve property: kg for mass, MJ from electricity meters, m3 for directly abstracted groundwater. Purchased-water mass is not converted to volume without measured density and conditions. Reconcile stage utility totals with the factory bill, and component/retained-fluid inclusion with the net-mass record. | row-specific kg, MJ, m3 | each job and meter interval | complete same-configuration batch in reporting period; disclose seasonality and mixed lines | declared factory, outsourced and purchased gates | attributable row amount / accepted machines of the same configuration | calibration, supplier composition, job, allocation and disposal evidence |
Calculation Rules
| rule_id | Applies to | Formula or rule | Inputs | Output | source_ids |
|---|---|---|---|---|---|
normalize_mass | all inventory rows | q_ref = q_item / M; q_item = exchange amount per one accepted finished machine; q_ref = exchange amount per 1 kg reference flow. | q_item; M; cp_mass | q_ref |
The finished_machine output is fixed at 1 kg and is not divided again. Apply the conversion to each other applicable row using the same configuration and batch; quantity numerator units remain unchanged. Mixed configurations must be separated, not averaged by count with a catalogue mass.
Data Quality Requirements
| requirement_id | Applies to | Requirement | Evidence |
|---|---|---|---|
configuration_trace | all rows | Trace every input to installed BOM, route and accepted unit; supplier finished parts do not also receive raw-stock burdens. Disclose remaining components as missing coverage until separate atomic records are added. | drawings, BOM, supplier receipts |
basis_quality | cp_mass | M must be positive measured net mass, with the same delivered configuration, fluid state and acceptance gate as all collected exchanges. | calibration and weighing records |
coverage_quality | all processes | Document full batch temporal coverage, meter overlap, rejects, rework, stock changes, outsourced stages and unmeasured emissions. A missing record is unknown, not zero or not_applicable. | ledger, coverage matrix and measurement uncertainty |
chemistry_quality | wet_surface; powder_finish | Verify recipe, concentration and SDS for each supplied formulated chemical; characterize each outgoing waste stream and identify treatment separately from environmental emissions. | recipe, SDS, analyses and transfer tickets |
9. Validation Rules
| rule_id | applies_to | rule | source_ids |
|---|---|---|---|
validate_reference | reference | Reject missing qualifiers, payload/gross mass substitution, non-positive M or mismatch between configuration, cp_mass and finished_machine. Require 1 kg output and explicit normalize_mass on every non-reference applicable row. | |
validate_atomic | inventory | Require one physical exchange per row, verified public identity when supplied, correct property/unit, localized display and medium. Unresolved UUIDs do not authorize proxy substitution or mixed rows. | |
validate_balance | coverage | Reconcile installed mass, stock, waste, retained fluids and purchased parts using the actual BOM; independently check clamp/hose configuration. Reconcile utilities by stage; internal transfers cancel. Explain differences against recorded measurement uncertainty, without a fabricated numerical tolerance. | |
validate_completeness | dataset | Check every conditional stage against route evidence. Require missing chemicals, parts, test media and actual emissions to be split and collected before claiming a complete inventory; prohibit cradle-to-gate or service comparisons while upstream or functional coverage is incomplete. | |
validate_allocation | shared_operations | Require complete driver records and justification for allocation and scrap treatment; document sensitivity where another defensible allocation may change results. | ghg-product-allocation-2011 |
10. Published Dataset Profile
| Field | Value |
|---|---|
| dataset_role | Manufacturing foreground process for a configured accepted machine |
| downstream_use | secondary_dataset; background_dataset |
| allowed_use | Input to a declared machinery supply model with identical configuration and disclosed upstream coverage |
| excluded_use | Pile installation/extraction service, field vibration/noise and life-cycle comparison across pile/soil or head configurations without separate functional modelling |
| required_metadata | Model, configuration, empty state, M, retained fluids, manufacturer/site, reporting period, process route, voltage/geography, supplier gates, transport/packaging scope and allocation |
| required_quality_disclosure | Measured versus estimated quantities; unresolved identities; unmeasured emissions and components; upstream linkage completeness; uncertainty, data age and configuration limitations |
| update_trigger | Changed mechanism, capacity, BOM, coating chemistry, supplied component, energy mix, acceptance specification or mass protocol |
11. Data Sources
| Source id | Type | Reference | Used for |
|---|---|---|---|
bruce-vibratory-hammer | handbook | BRUCE PILING EQUIPMENT, Pile Driving & Extracting Vibratory Hammer, retained manufacturer brochure, PDF p.1 cover and PDF pp.3–5 (printed3–5), Outstanding features; Main features; suppressor and gearbox. https://www.powerquip.co.kr/wp-content/uploads/2024/01/Hydraulic-vibratory-hammer-brochure-vibro-hammer-bruce-vibro-hammer-2025_low-3.pdf | Crane-suspended hydraulic drive, machined steel eccentrics, synchronization gears, bearings/shafts, clamp cylinder, elastomer suppression and control example only. Model performance, service-life and efficiency claims are not factory quantities or universal acceptance limits. |
pve-normal-frequency | handbook | PVE USA / Dieseko USA, Vibratory Hammers Normal Frequency, Standard Frequency; How They Work; integrated equipment system. https://pveusa.com/vibratory-hammers-normal-frequency/ | Distinguishes vibration hammer, clamp and powerpack integration; does not mandate bundled manufacture or a universal configuration. |
ghg-product-allocation-2011 | official_guidance | WRI/WBCSD, Product Life Cycle Accounting and Reporting Standard (2011), chapter9, printed p.63 / PDF p.65, tables9.1–9.2. https://ghgprotocol.org/sites/default/files/standards/Product-Life-Cycle-Accounting-Reporting-Standard_041613.pdf | Historical allocation hierarchy only; actual physical-driver evidence required, no present comprehensive standard-conformance claim. |
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Structured rule index
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System boundary rules · 3
| Rule ID | Applies to | Rule | Source IDs |
|---|---|---|---|
manufacturing_gate | foreground | Include every actual operation and attributable rework from declared received inputs through factory acceptance; distinguish purchased parts from site fabrication to prevent duplication. Use documented route records. | |
conditional_finish | finishing | Activate only documented finishing operations and chemical recipes. Manufacturer examples establish possible routes, not universal requirements or recipes. | |
exclude_piling_site | piling_use | Keep soil and piles, site driving/extraction, site fuel/noise/vibration and maintenance/disposal outside manufacture. Include actual factory testing and measured releases; no piling service is included. |
Allocation rules · 3
| Rule ID | Applies to | Rule | Source IDs |
|---|---|---|---|
direct_attribution | shared_operations | Use job tickets and submetering before allocation. Where a common meter remains, require a measured causal driver such as machine-hours for the identified operation, with all participating jobs and idle load disclosed; divide the attributable quantity by accepted units of the same configuration before mass normalization. | ghg-product-allocation-2011 |
coproduct_decision | saleable_outputs | Do not assume scrap is a co-product. Disclose destination and legal/product status. If multiple saleable co-products actually occur, seek subdivision; justify a physical relation or, when unavailable, documented economic/other allocation with sensitivity. No universal mass share or avoided-steel credit is prescribed. | ghg-product-allocation-2011 |
rework_scrap | manufacturing_losses | Retain rework and rejected-unit burdens attributable to the accepted reporting batch. Record recovered internal material once and exported wastes separately. Disclose upstream recycled-content method and any downstream treatment separately to prevent double credits. |
Validation rules · 5
| Rule ID | Applies to | Rule | Source IDs |
|---|---|---|---|
validate_reference | reference | Reject missing qualifiers, payload/gross mass substitution, non-positive M or mismatch between configuration, cp_mass and finished_machine. Require 1 kg output and explicit normalize_mass on every non-reference applicable row. | |
validate_atomic | inventory | Require one physical exchange per row, verified public identity when supplied, correct property/unit, localized display and medium. Unresolved UUIDs do not authorize proxy substitution or mixed rows. | |
validate_balance | coverage | Reconcile installed mass, stock, waste, retained fluids and purchased parts using the actual BOM; independently check clamp/hose configuration. Reconcile utilities by stage; internal transfers cancel. Explain differences against recorded measurement uncertainty, without a fabricated numerical tolerance. | |
validate_completeness | dataset | Check every conditional stage against route evidence. Require missing chemicals, parts, test media and actual emissions to be split and collected before claiming a complete inventory; prohibit cradle-to-gate or service comparisons while upstream or functional coverage is incomplete. | |
validate_allocation | shared_operations | Require complete driver records and justification for allocation and scrap treatment; document sensitivity where another defensible allocation may change results. | ghg-product-allocation-2011 |
Processes and inputs/outputs · 7
| Process ID | Process name | Input flows | Output flows |
|---|---|---|---|
forming | Stock cutting, forming and machining | 2 | 1 |
joining | Structural welding and dressing | 4 | 0 |
wet_surface | Aqueous cleaning and preparation | 4 | 1 |
powder_finish | Powder application and curing | 2 | 1 |
assembly | Configured machinery assembly | 18 | 0 |
acceptance | Factory acceptance and net-mass determination | 1 | 2 |
packaging | Shipment protection at factory gate | 2 | 0 |
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