Investigation of the Behaviour of Cohesive Powder in the Biaxial Tester
The results from experiments with cohesive limestone powder in a Biaxial Tester are presented. The biaxial tester allows a plane homogeneous deformation and measurement of the complete stress-strain states. It was found that proportional strai...
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Hosokawa Powder Technology Foundation
2014-05-01
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Series: | KONA Powder and Particle Journal |
Online Access: | https://www.jstage.jst.go.jp/article/kona/13/0/13_1995014/_pdf/-char/en |
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doaj-add38056fd8e435a951afd2d19d8b2112021-02-03T01:23:15ZengHosokawa Powder Technology FoundationKONA Powder and Particle Journal0288-45342187-55372014-05-011309910310.14356/kona.1995014konaInvestigation of the Behaviour of Cohesive Powder in the Biaxial TesterHermann Josef Feise0Jörg Schwedes1Institute of Mechanical Powder Processing, Technical University BraunschweigInstitute of Mechanical Powder Processing, Technical University BraunschweigThe results from experiments with cohesive limestone powder in a Biaxial Tester are presented. The biaxial tester allows a plane homogeneous deformation and measurement of the complete stress-strain states. It was found that proportional strain paths lead to associated proportional stress paths. Strain paths with a sharp bend lead to asymptotic stress paths. Under pure shear deformation, the limestone exhibits steady-state flow in the critical state. The critical state stress was found to be a function of the volumetric strain, i.e. the porosity, but not of the consolidation procedure. The Cam-Clay model of Roscoe has been extended to include the cohesion exhibited by many fine powders. The cohesive strength is represented by anisotropic tensile stress measure, used to shift the yield curves into the tensile regime. Significant cohesive strength can only be achieved in fairly dense packings.https://www.jstage.jst.go.jp/article/kona/13/0/13_1995014/_pdf/-char/en |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Hermann Josef Feise Jörg Schwedes |
spellingShingle |
Hermann Josef Feise Jörg Schwedes Investigation of the Behaviour of Cohesive Powder in the Biaxial Tester KONA Powder and Particle Journal |
author_facet |
Hermann Josef Feise Jörg Schwedes |
author_sort |
Hermann Josef Feise |
title |
Investigation of the Behaviour of Cohesive Powder in the Biaxial Tester |
title_short |
Investigation of the Behaviour of Cohesive Powder in the Biaxial Tester |
title_full |
Investigation of the Behaviour of Cohesive Powder in the Biaxial Tester |
title_fullStr |
Investigation of the Behaviour of Cohesive Powder in the Biaxial Tester |
title_full_unstemmed |
Investigation of the Behaviour of Cohesive Powder in the Biaxial Tester |
title_sort |
investigation of the behaviour of cohesive powder in the biaxial tester |
publisher |
Hosokawa Powder Technology Foundation |
series |
KONA Powder and Particle Journal |
issn |
0288-4534 2187-5537 |
publishDate |
2014-05-01 |
description |
The results from experiments with cohesive limestone powder in a Biaxial Tester are presented. The biaxial tester allows a plane homogeneous deformation and measurement of the complete stress-strain states. It was found that proportional strain paths lead to associated proportional stress paths. Strain paths with a sharp bend lead to asymptotic stress paths. Under pure shear deformation, the limestone exhibits steady-state flow in the critical state. The critical state stress was found to be a function of the volumetric strain, i.e. the porosity, but not of the consolidation procedure. The Cam-Clay model of Roscoe has been extended to include the cohesion exhibited by many fine powders. The cohesive strength is represented by anisotropic tensile stress measure, used to shift the yield curves into the tensile regime. Significant cohesive strength can only be achieved in fairly dense packings. |
url |
https://www.jstage.jst.go.jp/article/kona/13/0/13_1995014/_pdf/-char/en |
work_keys_str_mv |
AT hermannjoseffeise investigationofthebehaviourofcohesivepowderinthebiaxialtester AT jorgschwedes investigationofthebehaviourofcohesivepowderinthebiaxialtester |
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