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AUTOMATED SIMULATION OF COMPRESSION MOLD FILLING FOR COMPLEX PARTS.
Tim A. Osswald
, Charles L. Tucker
Office of the Provost and Executive Vice Chancellor
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Dive into the research topics of 'AUTOMATED SIMULATION OF COMPRESSION MOLD FILLING FOR COMPLEX PARTS.'. Together they form a unique fingerprint.
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Keyphrases
Mold Filling
100%
Complex Parts
100%
Mold Cavity
100%
Compression Mold
100%
Automated Simulation
100%
Velocity Field
50%
Arbitrary Shape
50%
Flow Front
50%
Compression Molding
50%
Finite Element Mesh
50%
Pressure Field
50%
Automatically Generate
50%
User Interaction
50%
Multiple Charging
50%
Moulded Parts
50%
Sheet Molding Compound
50%
Filling Simulation
50%
Thin Parts
50%
Engineering
Mold Filling
100%
Mould Cavity
100%
Velocity Field
50%
Arbitrary Shape
50%
Flow Front
50%
Finite Element Mesh
50%
Moulded Part
50%
Compression Molding
50%
Thin Part
50%
Pressure Distribution
50%
Sheet Molding Compounds
50%