记忆表面分离单调和循环负荷的过程

Q3 Materials Science
В.С. Бондарь, Д.Р. Абашев, Valentin S. Bondar, D. Abashev
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引用次数: 0

摘要

结构材料的弹塑性变形过程可以由一系列单调和循环的加载状态组成,在这些加载状态中产生了独特的效应和特征。这类过程的数学建模以及资源评估和预测是一项非常困难的任务。此外,对从循环到单调和从单调到循环的瞬态过程的分析表明,有必要将这些过程分开。通过对不锈钢12õ18Н10T试样在一系列单调和循环加载模式的刚性(控制变形)变形过程中,在常温单轴拉伸压缩条件下的试验研究结果的分析,揭示了单调和循环载荷过程的特点和差异。为了描述这些特征,并在具有组合硬化的塑性流动理论中分离单调和循环加载模式的过程,引入了记忆表面的各种变体。对不锈钢实验研究结果的分析表明,在塑性应变张量的空间中,记忆表面的大小由塑性应变的范围决定,中心的位置由循环载荷下的平均塑性应变值决定。考虑了记忆表面的各种变体,识别了它们的能力和缺点,并确定了记忆表面最合适的变体。为了确认该版本的记忆表面的可操作性,以及Bondar塑性模型的方程,对计算结果和实验结果进行了比较,并在应力-应变状态的动力学和失效循环次数方面获得了这些结果之间的可靠一致性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Memory surfaces separating the processes of monotonous and cyclic loads
The processes of elastoplastic deformation of structural materials can consist of a sequence of monotonous and cyclic loading regimes, in which peculiar effects and features arise. Mathematical modeling of such processes, as well as resource assessment and forecasting, is a very difficult task. In addition, the analysis of transient processes from cyclic to monotonous and from monotonous to cyclic shows the need to separate these processes. Based on the analysis of the results of experimental studies of samples of stainless steel 12Х18Н10T under a rigid (controlled deformation) deformation process, which is a sequence of monotonic and cyclic loading modes, under conditions of uniaxial tension-compression at normal temperature, the features and differences in the processes of monotonic and cyclic loading are revealed. To describe these features and separate the processes of monotonic and cyclic loading modes in the theories of plastic flow with combined hardening, various variants of memory surfaces are introduced. An analysis of the results of experimental studies of stainless steel showed that in the space of the plastic strain tensor, the size of the memory surface is determined by the range of plastic strains, and the position of the center is determined by the values of average plastic strains under cyclic loading. Various variants of the memory surface are considered, their capabilities and disadvantages are identified, and the most adequate variant of the memory surface is determined. To confirm the operability of this version of the memory surface, together with the equations of the Bondar plasticity model, the calculated and experimental results were compared and a reliable agreement was obtained between these results both in terms of the kinetics of the stress-strain state and in terms of the number of cycles to failure.
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来源期刊
PNRPU Mechanics Bulletin
PNRPU Mechanics Bulletin Materials Science-Materials Science (miscellaneous)
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1.10
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