🏭 High Pressure Die Casting Process Design & Validation
Engineering Guide: This toolkit provides essential calculations for Die Casting process development based on NADCA (North American Die Casting Association) standards. Thermal constants and density values automatically adjust based on the selected alloy. Input your part geometry to optimize process variables and validate machine compatibility using standard formulas.
📊 Comprehensive Analysis Results
Quick Summary for Beginners
🔄 Die Casting Process Overview
Understanding Clamping Force
When molten metal is injected into the die cavity under high pressure, it pushes against the die halves trying to separate them. The clamping force must exceed this separating force to prevent flash (metal leaking through the parting line).
Machine Utilization
Projected Area Breakdown
| Component | Area |
|---|
Clamping Force Analysis
| Parameter | Value |
|---|
Slide Core Locking Force
Understanding PQ² Diagram
The PQ² diagram is the most important tool for HPDC process optimization. It shows the relationship between metal pressure (P) and flow rate squared (Q²).
Machine Line Parameters
P = Pmax × (1 - Q²/Q²max)
Die Line Parameters
P = R × Q²
Operating Point
Intersection of machine and die lines
Process Window
Understanding Fill Time
Fill time is the duration from when metal enters the gate until the cavity is completely filled. It must be short enough that metal does not solidify before filling completes.
Actual fill time < 80% of NADCA max - provides safety margin
Actual fill time 80-100% of NADCA max - process sensitive to variation
Actual fill time > NADCA max - cold shuts and misruns likely
Fill Time Comparison
NADCA Fill Time Analysis
tmax = K × [(Ti - Tf + S×Z) / (Tf - Td)] × T
Flow Pattern Assessment
Calculated Gate Requirements
Recommended Gate Dimensions
Runner System Design
Sleeve Fill Analysis
Critical Slow Shot Velocity
vcritical = c × √(g × D) × (1 - Fill%/100)
Stroke Profile
Intensification System Analysis
Pressure Requirements
Vent Area Calculation
Chill Vent Design
Vacuum System Sizing
Heat Load Analysis
Cooling Channel Flow
Cooling System Requirements
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