A plane-stress plasticity model for masonry for the explicit finite element time integration scheme

Q4 Engineering
Oliver Lundqvist, M. Chauhan
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引用次数: 0

Abstract

Masonry is a composite material and can be considered anisotropic on a macroscopic scale, i.e., masonry exhibits different properties in different directions, both in the elastic and inelastic range. Like other quasi-brittle materials, masonry exhibits softening and hardening behavior after failure for compression and tension. In this paper a smeared continuum plasticity model of masonry is presented as well as it numerical implementation in an explicit finite element time integration scheme, as such a material model does not exist for a commercial explicit finite element solver. The implementation is done by writing a user-defined material model (VUMAT) as a Fortran subroutine in the commercial software ABAQUS Explicit. The material model is tested both in uniaxial and biaxial loading against similar tests from earlier research. The results show good agreement with earlier research.
基于显式有限元时间积分方案的砌体平面应力塑性模型
砌体是一种复合材料,在宏观尺度上可以认为砌体具有各向异性,即砌体在弹性和非弹性范围内,在不同方向上表现出不同的性能。与其他准脆性材料一样,砌体在压缩和拉伸破坏后表现出软化和硬化行为。针对市面上的显式有限元解算器不存在的材料模型,本文提出了一种砌体的涂抹连续体塑性模型,并给出了该模型在显式有限元时间积分格式下的数值实现。通过在商业软件ABAQUS Explicit中编写用户定义的材料模型(VUMAT)作为Fortran子例程来实现。材料模型在单轴和双轴载荷下与早期研究的类似试验进行了测试。结果与早期的研究结果一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Rakenteiden Mekaniikka
Rakenteiden Mekaniikka Engineering-Mechanical Engineering
CiteScore
0.50
自引率
0.00%
发文量
2
审稿时长
16 weeks
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