The numerical simulation for contact essence between fractal rough surfaces is conducted
and a concept of self-affine contact spot is introduced to propose a new fractal contact model. Compared with the asperity in classical fractal contact model
the self-affine contact spot better describes the process of fractal contact. The self-affine contact spot now gets fractal
and the assumption of no interaction between asperities is unnecessary. Under the assumption that the rough surfaces are all unlubricated isotropic surfaces
this model can be simulated by W-M function. Making use of the relationship between the maximum deformation and contact area of contact spot
the classical fractal contact model is modified to further approach the engineering practice. It is found that G-W model ignores plastic deformation of contact spot thus to underestimate the contact load of rough surfaces; M-B model leads to a smaller maximum deformation to difficultly use size-distribution function and overestimates the contact load. The self-affine contact spot instead of asperity enables to accurately evaluate the contact pressure
The more the fractal dimension(or the less the fractal characteristic scale)
the less the contact pressure is needed for same contact area.
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references
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陈建江 1
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Related Institution
College of Mechanical and Precision Instrument Engineering, XI'AN University of Technology
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