Elastoplastic finite element model development and validation for low pressure uniaxial compaction of dry cohesive powders
Author:
Publisher
Elsevier BV
Subject
General Chemical Engineering
Reference21 articles.
1. Triaxial testing of dry, cohesive powder and its application to a modified Cam-clay constitutive model
2. Finite Element Model for Predicting Static and Thermally Induced Bin Wall Pressures
3. A new yield function for compressible materials
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1. Powder flow in an automated uniaxial tester and an annular shear cell: a study of pharmaceutical excipients and analytical data comparison;Drug Development and Industrial Pharmacy;2012-10-08
2. Computer simulation of model cohesive powders: Plastic consolidation, structural changes, and elasticity under isotropic loads;Physical Review E;2008-09-15
3. Localized Densification during the Stage II-III Transition - Compaction Efficiency at High Pressures;Journal of the American Ceramic Society;2004-04
4. Molecular Dynamics Simulations of Granular Compaction;Chemistry of Materials;2003-08-02
5. An Elasto-Viscoplastic Constitutive ModelIncorporating Pore Air Compressibility DuringPowder Compression Process;Particulate Science and Technology;2003-04
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