首页> 外文期刊>Acta Mechanica Solida Sinica >QUANTIFICATION OF SHEAR DAMAGE EVOLUTION IN ALUMINIUM ALLOY 2024T3
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QUANTIFICATION OF SHEAR DAMAGE EVOLUTION IN ALUMINIUM ALLOY 2024T3

机译:铝合金2024T3剪切损伤演化的量化

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摘要

Shear damage may occur in the process of metal machining such as blanking and cutting, where localized shear deformation is developed. Experimental findings indicate that microscopic shear damage evolution in aluminium alloy 2024T3 (Al 2024T3) is a multi-stage mechanism, including particle cracking, micro-shear banding, matrix microcracking and coalescence of microcracks. This study is an attempt to use a set of equations to describe the multi-stage shear damage evolution in Al 2024T3. The shear damage variables in terms of multi-couple parameters of a power-law hardening material have been defined. An evolution curve of shearing damage has been calculated from experimental data. The values of the shear damage variable at different stages of damage have also been calculated. By making use of the findings, the relation between the microscopic shear damage evolution and the macroscopic shear response of the material has been discussed.
机译:在诸如落料和切割之类的金属机械加工过程中,可能会发生剪切损伤,在这种过程中会产生局部剪切变形。实验结果表明,铝合金2024T3(Al 2024T3)的微观剪切损伤演化是一个多阶段机制,包括颗粒裂纹,微剪切带,基体微裂纹和微裂纹的聚结。本研究试图使用一组方程来描述Al 2024T3的多阶段剪切损伤演变。已经定义了根据幂律硬化材料的多耦合参数的剪切损伤变量。剪切损伤的演化曲线已经从实验数据中计算出。还计算了在不同损伤阶段的剪切损伤变量的值。利用这些发现,讨论了微观剪切损伤演变与材料的宏观剪切响应之间的关系。

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