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Thermal-mechanical fatigue simulation of a P91 steel in a temperature range of 400–600°C

机译:P91钢在400–600°C温度范围内的热机械疲劳模拟

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摘要

This paper deals with the identification of material constants to simulate the effect of cyclic mechanical loading and temperatures. A Chaboche viscoplasticity model was used in this study to model the thermal-mechanical behaviour of a P91 martensitic steel. A fully-reversed cyclic mechanical testing programme was conducted isothermally between 400 and 600°C with a strain amplitude of 0.5%, to identify the model constants using a thermo-mechanical fatigue (TMF) test machine. Thermo-mechanical tests of P91 steel were conducted for two temperature ranges of 400 – 500°C and 400 – 600°C. From the test results, it can be seen that the P91 steel exhibits cyclic softening throughout the life of the specimens, for both isothermal and thermal-mechanical loading and this effect can be modelled by the set of viscoplasticity constants obtained. Finite element simulations of the test specimens show good comparison to isothermal and TMF experimental data.
机译:本文涉及材料常数的识别,以模拟循环机械载荷和温度的影响。在这项研究中使用Chaboche粘塑性模型对P91马氏体钢的热机械行为进行建模。在400至600°C等温下进行全反向循环机械测试程序,应变幅度为0.5%,以便使用热机械疲劳(TMF)测试机确定模型常数。 P91钢的热机械测试是在400 – 500°C和400 – 600°C的两个温度范围内进行的。从测试结果可以看出,P91钢在试样的整个寿命中均表现出周期性的软化,无论是等温载荷还是热机械载荷,都可以通过获得的一组粘塑性常数来模拟这种影响。试样的有限元模拟显示了与等温和TMF实验数据的良好对比。

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