Mass balance
Record part mass by cavity, active cavity count and runner/sprue mass. Keep purge, startup scrap and normal per-cycle shot in separate fields.
Shot mass and volume describe the material required each cycle. Plasticizing capacity describes how quickly the configured screw can prepare material under stated conditions. Connect both to the exact resin, recovery window, residence behavior and acceptance trial.
An injection unit can have enough nominal shot volume and still be unsuitable for the required plasticizing time, pressure/flow or resin behavior. A high catalogue rate can also be irrelevant when its material and measurement basis do not match the project.
Define the resin and plasticizing hardware questionsEach field needs its own source and condition. Mark the status as measured, calculated, supplier-confirmed or estimated.
| Decision field | Question | Collect | Boundary |
|---|---|---|---|
| Total injected shot | How much material enters the mold each cycle? | All cavity parts plus applicable cold runner/sprue, with weight and volume source | Not the same as machine catalogue capacity or saleable part weight |
| Material basis | Which exact resin and condition are used? | Grade, density basis, filler/additive, moisture condition, color and regrind/recycled share | A reference-resin shot weight cannot be treated as the actual-resin result |
| Shot volume / screw stroke | Where does the shot sit in the proposed injection unit? | Calculated or measured volume, screw diameter/configuration and supplier working guidance | Capacity fit does not prove pressure, flow, melt quality or residence fit |
| Plasticizing demand | How much melt must be prepared per unit time? | Total shot per cycle, target cycle and production interruptions included/excluded | Average throughput alone can hide a short recovery window |
| Available recovery time | When may the screw recover inside the real sequence? | Cooling, holding, mold/robot motions, permitted overlap and control sequence | Do not automatically use the full cycle time |
| Plasticizing evidence | On what material and method is supplier capacity stated? | Reference material, screw, settings, test method, units and applicable conditions | EUROMAP or supplier values need the same basis before comparison |
The responsible material and process teams must approve conversion, residence and margin assumptions before a configuration is released.
Record part mass by cavity, active cavity count and runner/sprue mass. Keep purge, startup scrap and normal per-cycle shot in separate fields.
Use the intended material and a controlled conversion basis. Mark whether density is solid, melt, supplier-provided or estimated.
Convert the total shot and target cycle into a required average material rate with explicit units and availability assumptions.
Compare shot mass with the actual time available for plasticizing after required non-overlapping motions and process constraints.
Check the proposed shot use, barrel inventory, thermal history, shear, screw design and material-supplier guidance together.
Confirm the proposed screw and injection unit using the intended resin, mold, cycle sequence and agreed melt/part-quality evidence.
A controlled pack lets the buyer and supplier revise the same calculation when resin, cavities, runner or target cycle changes.
| Record | Required fields | Evidence state |
|---|---|---|
| Part and runner record | Mass/volume by cavity, active cavities and cold-runner contribution | Measured sample, controlled CAD/mold record or marked estimate |
| Resin record | Exact grade, additives/filler, density basis, moisture and regrind/recycled content | Current material TDS/processing guide and buyer specification |
| Cycle sequence | Holding, cooling, plasticizing, mold, ejector and robot timing plus allowed overlap | Current stable process or reviewed target sequence |
| Proposed injection unit | Screw, volume, pressure/flow, torque and plasticizing basis | Current configured supplier data—not a family-level headline |
| Rate comparison | Required average rate and recovery-window rate with units and assumptions | Reviewed calculation plus supplier test basis |
| Acceptance evidence | Recovery time, melt/part quality, process stability and recorded deviations | Agreed mold/material trial and measurement plan |
The answers separate capacity, rate, recovery and material behavior so one catalogue field does not decide the injection unit.
No. Shot capacity describes a mass or volume associated with the injection unit, often on a stated reference-material basis. Plasticizing capacity is a rate under stated screw, material and test conditions. Both checks are needed.
Start with total material injected per cycle and the intended cycle to calculate average demand. Then check the more restrictive recovery window in the actual motion sequence. Preserve units, material basis and all assumptions for supplier review.
No. Reference-resin mass cannot be copied directly to another grade. Compare volume and the intended material using an approved conversion and confirm the configured injection unit with the machine and material teams.
Not automatically. The available recovery window depends on holding, cooling, screw delay, mold movements, robot actions and which motions the configured machine permits to overlap. Map the real sequence.
Include part and runner mass/volume, cavity count, exact resin grade and condition, target cycle sequence, available recovery window, pressure/flow need, screw and residence constraints, supplier capacity test basis and the planned trial evidence.
Attach the total shot record, exact material, recovery sequence, supplier capacity basis, screw questions and trial criteria so the injection unit can be reviewed.
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