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首页> 外文期刊>Materials transactions >Two-Dimensional and Three-Dimensional Finite Element Analysis of Finite Contact Width on Fretting Fatigue
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Two-Dimensional and Three-Dimensional Finite Element Analysis of Finite Contact Width on Fretting Fatigue

机译:微动疲劳有限接触宽度的二维和三维有限元分析

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Three-dimensional effects of finite contact width fretting fatigue were investigated using the combination of full three-dimensional finite element model and two-dimensional plane strain finite element model, named as a hybrid layer method. Free edge boundary effect in finite contact width fretting fatigue problem required full three-dimensional finite element analysis to obtain accurate stress state and relative displacement in contact zone. To save the computational cost with sufficient accuracy, traction distributions obtained from coarse three-dimensional finite element analysis was applied to the two-dimensional plane strain finite element model. The key idea of this hybrid layer method was that traction distributions converged faster than the stresses. The proposed hybrid layer method predicted the free edge boundary effects of finite contact width fretting fatigue less than eight percent error bound and reduce the execution time to 5 percent of three-dimensional submodeling technique.
机译:结合完整的三维有限元模型和二维平面应变有限元模型,研究了有限接触宽度微动疲劳的三维效应,称为混合层法。有限接触宽度微动疲劳问题中的自由边缘边界效应需要完整的三维有限元分析才能获得准确的应力状态和接触区域的相对位移。为了以足够的精度节省计算成本,将从粗糙的三维有限元分析中获得的牵引力分布应用于二维平面应变有限元模型。这种混合层方法的关键思想是牵引力分布的收敛速度快于应力的收敛速度。所提出的混合层方法可预测有限接触宽度微动疲劳的自由边缘边界效应小于8%的误差范围,并将执行时间减少到三维子建模技术的5%。

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