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Simulation of multiaxial ratchetting and nonproportional cyclic deformation of IN738LC at high temperature

机译:高温IN738LC的多轴棘轮和非储循环变形的仿真

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In a previous work, the present authors proposed a new extension of the constitutive model of cyclic plasticity developed by Ohno and Wang, and they verified the extension on the basis of uniaxial ratchetting experiments of 316FR steel at roomtemperature. The extension is featured by the capability of representing steady-state ratchetting. In this work, the extension is examined further for the validity under nonproportional cyclic loading by simulating the viscoplastic behavior of IN738LCsubjected to multiaxial ratchetting, multiaxial cyclic stress relaxation, butterfly-type cyclic straining, and circular cyclic straining with strain hold at 85O~ . The original Ohno and Wang model and the Armstrong and Frederick model are also examined.It is shown that the extension enables us to simulate accurately the multiaxial viscoplastic behavior mentioned above, and that if neither ratchetting nor mean stress relaxation under cyclic loading is significant the three models provide nearly the samepredictions as one another.
机译:在以前的工作中,本作者提出了Ohno和Wang开发的循环塑性本构模型的新延伸,并在室温下的316FR钢的单轴棘轮实验的基础上验证了延伸。扩展以代表稳态棘轮的能力为特色。在这项工作中,通过模拟In738LCSUBETED的多轴棘轮,多轴循环应力弛豫,蝶形循环条纹和应变保持在850〜85O〜85O〜850〜85O〜85O〜的圆环循环紧张,进一步研究了延伸的延伸性。还检查了原始的OHNO和WANG模型和ARMSTRONG和FREDERICK模型。它表明,扩展使我们能够精确地模拟上述多轴粘液塑料行为,如果循环载荷下的棘轮也不是指压力松弛是显着的三个模型提供了几乎彼此的同谋。

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