首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2007 >ELASTIC-PLASTIC FINITE ELEMENT SIMULATION AND FATIGUE LIFE PREDICTION FOR BEAM AND ELBOW UNDER CYCLIC LOADING
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ELASTIC-PLASTIC FINITE ELEMENT SIMULATION AND FATIGUE LIFE PREDICTION FOR BEAM AND ELBOW UNDER CYCLIC LOADING

机译:循环荷载作用下梁和弯头的弹塑性有限元模拟和疲劳寿命预测

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Work hardening and Bauschinger effects on plastic deformation and fatigue life for a beam and an elbow under cyclic loading are examined using finite element analysis (FEA). Three typical material plastic hardening models, i.e. isotropic, kinematic and combined isotropic/kinematic hardening models are adopted in the FEA calculations. Based on the FEA results of cyclic stress and strain at a critical location and using an energy-based fatigue damage parameter, the fatigue lives are predicted for the beam and elbow. The results show that (1) the three material hardening models determine similar stress at the critical location with small differences during the cyclic loading, (2) the isotropic model underestimates the cyclic plastic strain and overestimates the fatigue life, (3) the kinematic model overestimates the cyclic plastic strain and underestimates the fatigue life, and (4) the combined model predicts the intermediate cyclic plastic strain and reasonable fatigue life.
机译:使用有限元分析(FEA)研究了工作硬化和鲍辛格效应对梁和弯头在周期性载荷下的塑性变形和疲劳寿命的影响。 FEA计算中采用了三种典型的材料塑性硬化模型,即各向同性,运动学和各向同性/运动学联合硬化模型。基于关键位置处的循环应力和应变的FEA结果,并使用基于能量的疲劳损伤参数,可以预测梁和弯头的疲劳寿命。结果表明:(1)三种材料硬化模型在循环载荷期间在临界位置确定相似的应力,且差异很小;(2)各向同性模型低估了循环塑性应变,并高估了疲劳寿命;(3)运动学模型高估了周期性塑性应变而低估了疲劳寿命,(4)组合模型预测了中等的周期性塑性应变和合理的疲劳寿命。

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