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首页> 外文期刊>International Journal of Plasticity >A combined isotropic, kinematic and distortional hardening model for aluminum and steels under complex strain-path changes
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A combined isotropic, kinematic and distortional hardening model for aluminum and steels under complex strain-path changes

机译:复合应变路径变化下铝和钢的组合各向同性,运动和扭曲硬化模型

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摘要

AbstractIn this work, a new model is proposed for predicting stress transients caused by strain path changes. The model is formulated in stress space, where a second order tensor, i.e., the microstructure stress deviator, is used to memorize and model the evolution history of the microstructure. Both its direction and magnitude are used to transiently distort the yield surface and to modify the work hardening. Orthogonal strain-path changes are handled by yield surface distortions, while Bauschinger effects are described by a kinematic hardening formulation. The model is calibrated to, and captures well, earlier published experiments for commercial pure aluminum, an extra deep drawing quality steel and a dual-phase steel. The proposed model describes qualitatively the response to double strain-path changes in low carbon steels. Efforts are made to design a relatively simple model as compared to the high complexity of the experiments, applying simple mathematical sub-models with straightforward interpretations and enabling a numerically stable implementation.Highlights?A new distortional hardening model is proposed.?
机译:<![CDATA [ 抽象 在本工作中,提出了一种新模型,用于预测由应变路径变化引起的应力瞬变。该模型在应力空间中配制,其中二阶张量,即微观结构应力脱模剂,用于记忆和模拟微观结构的演化历史。它的方向和幅度都用于瞬时扭曲屈服表面并改变工作硬化。正交应变路改变通过屈服表面失真处理,而Buuschinger效应由运动型硬化制剂描述。该模型被校准,并捕获井,早期公布的商用纯铝实验,额外的深层拉伸质量钢和双相钢。该建议的模型描述了对低碳钢的双重应变路径变化的定性。与实验的高复杂性相比,努力设计一个相对简单的模型,应用简单的数学子模型,具有简单的解释和实现数值稳定的实现。 亮点 提出了一种新的扭曲硬化模型。

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