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首页> 外文期刊>International Journal of Solids and Structures >Modeling the ductile damage process in commercially pure titanium
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Modeling the ductile damage process in commercially pure titanium

机译:模拟商业纯钛中的延性破坏过程

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This paper presents a constitutive model, which combines the models proposed by Stewart and Cazacu (2011) and Zhou et al. (2014), to describe the ductile damage process in a commercially pure titanium (CP Ti) and to simulate its mechanical response. In particular, a Gurson-type porous material model is modified by coupling two damage parameters, accounting for the void damage and the shear damage respectively, into the yield function and the flow potential. The plastic anisotropy and tension-compression asymmetry exhibited by CP Ti are accounted for by a plasticity model based on the linear transformation of the stress deviator. The theoretical model is implemented in the general purpose finite element software ABAQUS via a user defined subroutine and calibrated using experimental data. Good comparisons are observed between model predictions and experimental results for a series of specimens in different orientations and experiencing a wide range of stress states. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一个本构模型,该模型结合了Stewart和Cazacu(2011)以及Zhou等人提出的模型。 (2014年),描述了商业上纯钛(CP Ti)的延性破坏过程,并模拟了其机械响应。尤其是,通过将分别考虑空隙破坏和剪切破坏的两个破坏参数耦合到屈服函数和流动势中来修改Gurson型多孔材料模型。 CP Ti表现出的塑性各向异性和拉伸-压缩不对称性是由基于应力偏向器线性变换的可塑性模型解决的。该理论模型是通过用户定义的子例程在通用有限元软件ABAQUS中实现的,并使用实验数据进行了校准。在一系列方向不同,应力范围广泛的样本中,模型预测与实验结果之间进行了很好的比较。 (C)2016 Elsevier Ltd.保留所有权利。

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