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首页> 外文期刊>Journal of Materials Engineering and Performance >An improved Armstrong-Frederick-Type Plasticity Model for Stable Cyclic Stress-Strain Responses Considering Nonproportional Hardening
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An improved Armstrong-Frederick-Type Plasticity Model for Stable Cyclic Stress-Strain Responses Considering Nonproportional Hardening

机译:一种改进的Armstrong-Frederick型可塑性模型,用于考虑非营利性硬化的稳定循环应力 - 应变响应

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摘要

This paper modified an Armstrong-Frederick-type plasticity model for investigating the stable cyclic deformation behavior of metallic materials with different sensitivity to nonproportional loadings. In the modified model, the nonproportionality factor and nonproportional cyclic hardening coefficient coupled with the Jiang-Sehitoglu incremental plasticity model were used to estimate the stable stress-strain responses of the two materials (1045HR steel and 304 stainless steel) under various tension-torsion strain paths. A new equation was proposed to calculate the nonproportionality factor on the basis of the minimum normal strain range. Procedures to determine the minimum normal strain range were presented for general multiaxial loadings. Then, the modified model requires only the cyclic strain hardening exponent and cyclic strength coefficient to determine the material constants. It is convenient for predicting the stable stress-strain responses of materials in engineering application. Comparisons showed that the modified model can reflect the effect of nonproportional cyclic hardening well.
机译:本文改进了一种Armstrong-Frederick型可塑性模型,用于研究金属材料的稳定循环变形行为,对非备用载荷不同敏感性。在修改模型中,与江苏河古葡聚糖增量塑性模型相结合的非持续因子和非营养循环硬化系数用于在各种张力扭转菌株下估计两种材料(1045HR钢和304不锈钢)的稳定应力 - 应变响应路径。提出了一种新的方程,以基于最小正常应变范围计算非持续性因子。为一般多轴载荷提出了确定最小正常应变范围的程序。然后,修改模型只需要循环应变硬化指数和循环强度系数来确定材料常数。方便预测工程应用中材料的稳定应力 - 应变响应。比较表明,改性模型可以反映非营养循环硬化的效果。

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