Mesomechanics Finite-element Method for Determining the Shear Strength of Mudded Intercalation Materials

A new method regarding mesomechanics finite-element research is proposed to predict the peak shear strength of mudded intercalation materials on a mesoscopic scale. Based on geometric and mechanical parameters, along with the strain failure criteria obtained by sample's deformation characteristics,...

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Veröffentlicht in:Journal of Wuhan University of Technology. Materials science edition 2017-04, Vol.32 (2), p.289-291
Hauptverfasser: Hu, Qijun, Shi, Rendan, Yang, Xiaoqiang, Cai, Qijie, He, Tianjun, He, Leping
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container_title Journal of Wuhan University of Technology. Materials science edition
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creator Hu, Qijun
Shi, Rendan
Yang, Xiaoqiang
Cai, Qijie
He, Tianjun
He, Leping
description A new method regarding mesomechanics finite-element research is proposed to predict the peak shear strength of mudded intercalation materials on a mesoscopic scale. Based on geometric and mechanical parameters, along with the strain failure criteria obtained by sample's deformation characteristics, uniaxial compression tests on the sample were simulated through a finite-element model, which yielded values consistent with the data from the laboratory uniaxial compression tests, implying that the method is reasonable. Based on this model, a shear test was performed to calculate the peak shear strength of the mudded intercalation, consistent with values reported in the literature, thereby providing a new approach for investigating the mechanical properties of mudded intercalation materials.
doi_str_mv 10.1007/s11595-017-1594-x
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1993-0437
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source Springer Nature - Complete Springer Journals; Alma/SFX Local Collection
subjects Advanced Materials
Chemistry and Materials Science
Compression tests
Deformation
Finite element method
Intercalation
Materials Science
Mechanical properties
Mesoscopic physics
Shear strength
Shear tests
Uniaxial tests
title Mesomechanics Finite-element Method for Determining the Shear Strength of Mudded Intercalation Materials
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