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Inelastic constitutive models for the simulation of a cyclic softening behavior of modified 9Cr-lMo steel at elevated temperatures

机译:用于模拟改性9Cr-1Mo钢在高温下的循环软化行为的非弹性本构模型

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In this paper, the inelastic constitutive models for the simulations of the cyclic softening behavior of the modified 9Cr-1Mo steel, which has a significant cyclic softening characteristic especially in elevated temperature regions, are investigated in detail. To do this, the plastic modulus, which primarily governs the calculation scheme of the plasticity, is formulated for the inelastic constitutive models such as the Armstrong-Frederick model, Chaboche model, and Ohno-Wang model. By implementing the extracted plastic modulus and the consistency conditions into the computer program, the inelastic constitutive parameters are identified to present the best fit of the uniaxial cyclic test data by strain-controlled simulations. From the computer simulations by using the obtained constitutive parameters, it is found that the Armstrong-Frederick model is simple to use but it causes significant overestimated strain results when compared with the Chaboche and the Ohno-Wang models. And from the ratcheting simulation results, it is found that the cyclic softening behavior of the modified 9Cr-1Mo steel can invoke a ratcheting instability when the applied cyclic loads exceed a certain level of the ratchet loading condition.
机译:本文详细研究了用于模拟改性9Cr-1Mo钢的循环软化行为的非弹性本构模型,该模型具有明显的循环软化特性,尤其是在高温区域。为此,为非弹性本构模型(例如Armstrong-Frederick模型,Chaboche模型和Ohno-Wang模型)制定了主要控制塑性计算方案的塑性模量。通过将提取的塑性模量和稠度条件实现到计算机程序中,可以通过应变控制模拟来识别非弹性本构参数,以提供最适合单轴循环测试数据的参数。通过使用获得的本构参数进行的计算机模拟,发现Armstrong-Frederick模型易于使用,但与Chaboche模型和Ohno-Wang模型相比,会导致明显高估的应变结果。从棘轮仿真结果可以看出,当施加的循环载荷超过棘轮加载条件的一定水平时,改性9Cr-1Mo钢的循环软化行为会引起棘轮不稳定性。

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