A damage-plasticity model for brittle materials based on an approximation of Rankine type of failure criterion

Q4 Engineering
T. Saksala, R. Kouhia
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引用次数: 0

Abstract

A damage-plasticity model for tensile failure analyses of brittle materials is developed. The stress states leading to a failure (inelastic strains and damage) are indicated by a rounded approximation of the Rankine criterion. This approximation is expressed in terms of the stress invariants avoiding thus the need of coordinate transformations and eigenvalue solutions required by the classical Rankine criterion. The model is formulated with the effective stress space approach, i.e. the return mapping is first performed in the global effective stress space       and then the damage update is performed independently of the plasticity part. The model is consistently linearized, and, finally, some demonstrative simulations of a tensile test on a rock-like material are carried out.
基于兰金失效准则近似值的脆性材料损伤塑性模型
为脆性材料的拉伸破坏分析建立了破坏-塑性模型。导致失效的应力状态(非弹性应变和损伤)由兰金准则的近似值表示。该近似值用应力不变量表示,因此避免了经典朗肯准则所需的坐标变换和特征值求解。该模型采用有效应力空间法,即首先在全局有效应力空间中进行返回映射,然后独立于塑性部分进行损伤更新。该模型始终保持线性化,最后还对岩石类材料的拉伸试验进行了一些演示模拟。
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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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