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Stress regime-dependent creep constitutive model considerations in finite element continuum damage mechanics

机译:有限元连续体损伤力学中依赖于应力制度的蠕变本构模型的考虑

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摘要

Structural analysis and the design of high-temperature components require the consideration of material inelastic deformation and damage accumulation characteristics for a wide range of stresses and temperatures. For many engineering alloys, the creep deformation/damage accumulation mechanism exhibited at high stresses are not the same as those at lower stresses. This article explains the importance of considering this stress regime dependency in the creep model formulations and introduces a new (primary-secondary-tertiary) creep model which considers a gradual change of creep deformation/damage accumulation mechanism with stress variation. Application of the new stress regime-dependent creep model formulation in finite element continuum damage mechanics to simulate creep deformation/damage accumulation in a series of creep crack incubation tests involving fracture mechanics compact tension specimens shows a good agreement with experimental observations which was not achievable by considering conventional single-regime creep model equations.
机译:高温部件的结构分析和设计需要考虑材料的非弹性变形和对于各种应力和温度的损伤累积特性。对于许多工程合金,在高应力下表现出的蠕变变形/损伤累积机理与在低应力下表现出的蠕变/损伤累积机理不同。本文解释了在蠕变模型公式中考虑这种应力状态依赖性的重要性,并介绍了一种新的(初级-次级-第三级)蠕变模型,该模型考虑了随应力变化而引起的蠕变变形/损伤累积机制的逐渐变化。新的依赖于应力制度的蠕变模型公式在有限元连续介质破坏力学中的应用,以模拟蠕变变形/损伤累积,涉及一系列涉及断裂力学的紧凑拉伸试样的蠕变裂纹孵化测试,与实验观察结果吻合良好,这是无法通过实验获得的考虑常规的单区域蠕变模型方程。

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