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首页> 外文期刊>International Journal of Microstructure and Materials Properties >Mechanism of transformation plasticity and the unified constitutive equation for transformation-thermo-mechanical plasticity with some applications
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Mechanism of transformation plasticity and the unified constitutive equation for transformation-thermo-mechanical plasticity with some applications

机译:转变热力学的统一机理和统一本构方程及其应用

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摘要

Transformation plasticity is known to occur in weaker mother phase due to the progress of new phase with higher strength. A phenomenological mechanism is discussed, in the first part of the paper, why the transformation plastic deformation takes place under a stress level even lower than the characteristic yield stress of mother phase: This is principally based on the difference in thermal expansion coefficient in both phases. Bearing in mind that it is also a kind of plastic strain, a unified plastic flow theory is derived by introducing the effect of progressing new phase into the yield function of stress, temperature and plasticity related parameters. Thus obtained strain rate reveals to include the transformation plastic part in addition to mechanical and thermal plastic components. As examples of the application of the theory, temperature-elongation diagrams depending on applied stress are shown. Inelastic response for a fire resistant steel under varying temperature and stress as a model of a fire followed by the extinguishment is simulated being compared with experimental data.
机译:已知由于较高强度的新相的发展,在较弱的母相中会发生相变可塑性。在本文的第一部分中,讨论了一种现象学机理,为什么在甚至低于母相特征屈服应力的应力水平下发生相变塑性变形:这主要是基于两相热膨胀系数的差异。考虑到它也是一种塑性应变,通过将新相进展的影响引入应力,温度和塑性相关参数的屈服函数中,得出了统一的塑性流动理论。这样获得的应变率显示除了机械和热塑料部件之外还包括相变塑料部件。作为该理论的应用示例,显示了取决于所施加应力的温度-伸长图。将耐火钢在温度和应力变化的情况下的非弹性响应作为火灾然后熄灭的模型进行了模拟,并与实验数据进行了比较。

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