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A unified viscoplastic model for high temperature low cycle fatigue of service-aged P91 steel

机译:服役P91钢高温低周疲劳的统一粘塑性模型

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摘要

The finite element (FE) implementation of a hyperbolic sine unified cyclic viscoplasticity model is presented. The hyperbolic sine flow rule facilitates the identification of strain-rate independent material parameters for high temperature applications. This is important for the thermo-mechanical fatigue of power plants where a significant stress range is experienced during operational cycles and at stress concentration features, such as welds and branched connections. The material model is successfully applied to the characterisation of the high temperature low cycle fatigue behavior of a service-aged P91 material, including isotropic (cyclic) softening and nonlinear kinematic hardening effects, across a range of temperatures and strain-rates.
机译:提出了双曲正弦统一循环粘塑性模型的有限元实现。双曲正弦流动规则有助于识别高温应用中与应变率无关的材料参数。这对于发电厂的热机械疲劳非常重要,因为在运行周期和应力集中特征(例如焊缝和分支连接)处会承受较大的应力范围。该材料模型已成功地应用于表征使用寿命已久的P91材料的高温低循环疲劳行为,包括在温度和应变率范围内的各向同性(循环)软化和非线性运动硬化效应。

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