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Temperature and Strain Rate Dependent Simulation of High Speed Tensile Tests of I-PP
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M. Keuerleber,
Veröffentlicht/Copyright:
1. August 2005
Published Online: 2005-08
©2011 by Walter de Gruyter GmbH & Co.
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Artikel in diesem Heft
- CONTENTS
- Morphology and Mechanical Properties of Reactive and Non-Reactive COC/EOC Blends
- Multilayer Film Coextrusion of Polymer Melts: Analysis of Industrial Lines with the Finite Element Method
- Temperature and Strain Rate Dependent Simulation of High Speed Tensile Tests of I-PP
- Stress-Strain Behavior of Polyethylene Terephthalate) (PET) During Large Plastic Deformation by Plane Strain Compression. Part II: The Stress-Strain Temperature (SST) Superposition Principle
- Rheological Behavior Modeling of Recycled ABS/PC Blends Applied to Injection Molding Process
Artikel in diesem Heft
- CONTENTS
- Morphology and Mechanical Properties of Reactive and Non-Reactive COC/EOC Blends
- Multilayer Film Coextrusion of Polymer Melts: Analysis of Industrial Lines with the Finite Element Method
- Temperature and Strain Rate Dependent Simulation of High Speed Tensile Tests of I-PP
- Stress-Strain Behavior of Polyethylene Terephthalate) (PET) During Large Plastic Deformation by Plane Strain Compression. Part II: The Stress-Strain Temperature (SST) Superposition Principle
- Rheological Behavior Modeling of Recycled ABS/PC Blends Applied to Injection Molding Process