Contact Fatigue Tests and Life Simulations Using Computational Fracture Mechanics

Hong Lin, Robert R. Binoniemi, G. Fett, Douglas C. Burke, Thomas A. Woodard
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Abstract

Computational fracture mechanics based FATIG3D program was used to simulate contact fatigue life of rough surface contacts in boundary to mixed lubrication regimes. Two-rollers contact fatigue tests were conducted and test results were compared with calculated contact fatigue lives. Calculated contact fatigue life agreed with test results well with the selected set of input data. The effect of several important parameters in the input data on contact fatigue life was evaluated computationally using FATIG3D. These parameters include: oil pressure distribution, crack face friction, direction of friction, friction coefficient, initial crack length, Hertzian stress, and residual stress distributions. The results obtained in this work improved basic understanding and the application of FATIG3D in simulating contact fatigue behavior.
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基于计算断裂力学的接触疲劳试验和寿命模拟
采用基于断裂力学计算的FATIG3D程序对混合润滑边界粗糙表面接触疲劳寿命进行了数值模拟。进行了双辊接触疲劳试验,并将试验结果与计算接触疲劳寿命进行了比较。计算的接触疲劳寿命与试验结果和所选输入数据吻合较好。利用FATIG3D计算了输入数据中几个重要参数对接触疲劳寿命的影响。这些参数包括:油压分布、裂纹面摩擦、摩擦方向、摩擦系数、初始裂纹长度、赫兹应力、残余应力分布。本工作的结果提高了对FATIG3D在模拟接触疲劳行为中的基本认识和应用。
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