首页> 外文会议>ASME Pressure Vessels and Piping Conference >APPLICATION OF ENERGY-BASED DAMAGE MODEL TO SIMULATE DUCTILE FRACTURE UNDER CYCLIC LOADING AND VALIDATION AGAINST PIPING SYSTEM TEST DATA
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APPLICATION OF ENERGY-BASED DAMAGE MODEL TO SIMULATE DUCTILE FRACTURE UNDER CYCLIC LOADING AND VALIDATION AGAINST PIPING SYSTEM TEST DATA

机译:基于能量为基础的损伤模型在循环加载下模拟延性骨折和管道系统测试数据的验证

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In this paper, a method to predict ductile fracture under low cyclic loading condition is proposed. Then it is compared with test results of surface cracked pipes which is conducted by Battelle Institute. A&F nonlinear kinematic hardening model is adopted to describe material behavior under cyclic loading condition and energy-based damage model is applied to simulate ductile crack growth. The energy-based damaged model is depending on multi-axial fracture strain energy. To apply this model, two parameters should be determined from tensile and C(T) test results under monotonic loading condition. One is multi-axial fracture strain energy W_f and the other is critical damage value ω_c. From the determined damaged model, it is enable to simulate surface cracked pipe tests under low cyclic loading condition.
机译:本文提出了一种在低循环负载条件下预测延性裂缝的方法。然后将其与由Battelle Institute进行的表面裂纹管的测试结果进行比较。采用A&F非线性运动外硬化模型来描述循环负载条件下的材料行为,应用基于能量的损伤模型来模拟延性裂纹生长。基于能量的受损模型取决于多轴骨折应变能量。要应用此模型,应在单调负载条件下从拉伸和C(t)测试结果中确定两个参数。一个是多轴断裂应变能量W_F,另一个是临界损伤值ω_c。从确定的损坏模型中,它可以在低循环负载条件下模拟表面裂纹管测试。

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