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3D two scale X-FEM crack model with interfacial frictional contact: Application to fretting fatigue

机译:界面摩擦接触的3D两尺度X-FEM裂纹模型:在微动疲劳中的应用

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摘要

A global approach coupling experiments and numerical modeling is proposed to enhance crack prediction. Fretting tests have been conducted under conditions leading to crack formation. Three dimensional crack shapes have been reconstructed from metallographic cross-sections and described with level set functions. They are then used as input data in 3D two-scale X-FEM model detailed in this paper. Frictional contact conditions holding between the crack faces are accounting for. The methodology developed to describe those contact conditions at the pertinent scale is detailed. A 3D fretting fatigue test is modeled to illustrate the coupling between experiments and numerical modeling.
机译:提出了一种将实验与数值模型相结合的整体方法,以提高裂纹的预测能力。在导致裂纹形成的条件下进行了微动试验。从金相横截面重建了三维裂纹形状,并用水平集函数进行了描述。然后将它们用作本文详细介绍的3D两尺度X-FEM模型的输入数据。解释了裂纹面之间的摩擦接触条件。详细描述了以相关规模描述那些接触条件的方法。对3D微动疲劳测试进行了建模,以说明实验与数值建模之间的耦合。

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