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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Energy based approach for the evaluation of damage under partial slip and gross sliding condition
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Energy based approach for the evaluation of damage under partial slip and gross sliding condition

机译:基于能量的方法来评估部分滑移和大滑移条件下的损伤

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摘要

Three possible contact conditions may prevail at a contact interface depending on the magnitude of normal and tangential loads, that is, stick condition, partial slip condition or gross sliding condition. Numerical techniques have been used to evaluate the stress field under partial slip and gross sliding condition. Cattaneo and Mindlin approach has been adapted to model partial slip condition. Shear strain energy density and normalized strain energy release rate have been evaluated at the surface and in the subsurface region. It is apparent from the present study that the shear strain energy density gives a fair prediction for the nucleation of damage, whereas the propagation of the crack is controlled by normalized strain energy release rate. Further, it has been observed that the intensity of damage strongly depends on coefficient of friction and contact conditions prevailing at the contact interface.
机译:取决于法向载荷和切向载荷的大小,三种可能的接触条件可能在接触界面上占主导地位,即粘着状态,部分滑动状态或大滑动状态。数值技术已用于评估部分滑动和大滑动条件下的应力场。 Cattaneo和Mindlin方法已被修改为部分滑移条件的模型。在表面和地下区域已经评估了剪切应变能密度和归一化应变能释放率。从本研究中可以明显看出,剪切应变能密度为损伤的形核提供了合理的预测,而裂纹的扩展则由归一化应变能释放速率控制。此外,已经观察到损伤的强度在很大程度上取决于摩擦系数和在接触界面处普遍存在的接触条件。

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