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首页> 外文期刊>International Journal of Plasticity >Material response, localization and failure of an aluminum alloy under combined shear and tension: Part II analysis
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Material response, localization and failure of an aluminum alloy under combined shear and tension: Part II analysis

机译:剪切和张力下铝合金的材料响应,定位和失效:第二部分分析

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The responses of the tubular specimens loaded under combined tension and torsion in Part I exhibited limit load instabilities followed by extensive localized deformation prior to failure. The present manuscript outlines an analytical framework that aims to establish the extent to which plasticity can reproduce the measured responses up to the onset of failure without the introduction of damage-induced softening effects. The analysis incorporates a suitably calibrated non-quadratic anisotropic yield function, a material hardening response extracted to large strains from a simple shear test, and a finite element model with refined 3-D elements. The analysis successfully reproduces the shear and axial stress levels during the homogeneous deformation parts of the response, the stresses and deformations at the load maxima, and the parts with decreasing stress associated with localized deformation. Furthermore, the geometry of the necked zones and the rapid growth of strain inside them are reproduced to levels that correspond to the recorded failure strains. Critical aspects of this successful effort are the non-quadratic anisotropic yield function and the material hardening adopted. It is concluded that the framework developed, combined with a suitable failure criterion based on results like those in Part I, constitute a viable tool for establishing the end of life of structures in engineering practice.
机译:在第一部分中加载的管状试样的响应在I部分上表现出限制负载不稳定性,然后在发生故障之前进行广泛的局部变形。本手稿概述了一个分析框架,该框架旨在确定可塑性可以在没有引入损伤诱导的软化效果的情况下复制可塑性恢复的程度。该分析包括适当校准的非二次各向异性产率函数,从简单的剪切试验提取到大菌株的材料硬化反应,以及具有精制3-D元素的有限元模型。分析在响应的均匀变形部分的均匀变形部分中成功再现了剪切和轴向应力水平,负载最大值处的应力和变形以及与局部变形相关的应力降低的部件。此外,颈颈区域的几何形状和它们内部的应变的快速生长被再现为对应于记录的失效菌株的水平。这种成功努力的关键方面是非二次各向异性产量功能和所采用的材料硬化。得出结论是,该框架与基于第二部分中的结果相结合的框架,结合了合适的失效标准,构成了建立工程实践中结构寿命结束的可行工具。

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