typical two-rough-body contact system is considered to analyze the traditional measured value and standard-defined value respectively. The essentiality of the significant differences between the two values is revealed-the offset of shear loading surface leads to the overall bending of contact system; the investigated relative shear displacement contains the deformation of rough body. Aiming at the weakness of the traditional measurement
a new method is proposed to evaluate shear contact stiffness. The contact system is equivalent to a contact interface and a non-interface block with the same size. Following the principle of stiffness equivalence
shear contact stiffness is calculated indirectly. The newly calculated shear contact stiffness gets closer to the standard-defined value than the traditional measured one
thus the superiority and experimental feasibility are verified.
关键词
Keywords
references
JONES R E. A Greenwood-Williamson model of small-scale friction [J]. Journal of Applied Mechanics, 2007, 74: 31-40.
OLOFSSON U, HAGMAN L A. A model for micro-slip between flat surfaces based on deformation of ellipsoidal elastic bodies[J]. Tribology International, 1997(30): 599-603.
SEVOSTIANOV I, KACHANOV M. Normal and tangential compliances of interface of rough surfaces with contacts of elliptic shape [J]. International Journal of Solids and Structures, 2008(45): 2723-2736.
GREENWOOD J A,WILLIAMSON J B P. Contact of nominally flat surfaces [J]. Proceedings of the Royal Society of London: Series A,1966,295(1442):300-319.
BRIZMERA V, KLIGERMANA Y, ETSIONA I. Elastic-plastic spherical contact under combined normal and tangential loading in full stick [J]. Tribology Letters, 2007, 25(1): 61-70.
BERTHOUD P, BAUMBERGER T. Shear stiffness of a solid-solid multicontact interface [J]. Proceedings: Mathematical Physical and Engineering Sciences, 1998, 454(1974): 1615-1634.