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- W124658826 abstract "A generalized approach is proposed, following the Mindlin and Deresiewicz procedure, to studythe cyclic behavior of surfaces in contact under a small oscillating tangential force. In order tomake the procedure straightforward and as general as possible, a non-dimensional formulation,based only on the normal contact load-displacement curve, has been provided. It turns out that thenon-dimensional behavior under normal or tangential loading, as well as the energy dissipationinvolved in cyclic loading, strongly depends on the exponentα . This exponent can be calculatedexplicitly in the case of profiles described by mathematical expressions (e.g. cylinders andspheres), or can be determined from best fitting of experimental or numerical data (e.g. fromICARUS simulations).The larger is the exponent α , the larger is the energy dissipated in small amplitude (partialslip)tangential cycles.Moreover, a comparison has been provided, without any claims of completeness, among someof the theoretical models for the tangential interaction of rough surfaces available in the literature.The calculation of the exponent α allows us to show the influence of different statisticaldistribution assumptions of surface heights on the hysteretic energy dissipation.Finally, the stick-slip behavior of rough surfaces subjected to oscillating loads has beeninterpreted in terms of an analogy with the shake-down phenomenon described by the theory ofplasticity." @default.
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- W124658826 date "2005-01-01" @default.
- W124658826 modified "2023-09-27" @default.
- W124658826 title "Cyclic Micro-slip and Energy Dissipation on Elastic Rough Interfaces" @default.
- W124658826 hasPublicationYear "2005" @default.
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