000 02207nab a2200337 c 4500
001 vtls000660033
003 RU-ToGU
005 20210922102806.0
007 cr |
008 190703|2019 cc s a eng d
024 7 _a10.1007/s40544-018-0202-1
_2doi
035 _ato000660033
040 _aRU-ToGU
_brus
_cRU-ToGU
245 1 0 _aActive control of friction by transverse oscillations
_cJ. Benad, K. Nakano, V. L. Popov, M. Popov
504 _aБиблиогр.: 37 назв.
520 3 _aThe present paper is devoted to a theoretical analysis of sliding friction under the influence of in-plane oscillations perpendicular to the sliding direction. Contrary to previous studies of this mode of active control of friction, we consider the influence of the stiffness of the tribological contact in detail and show that the contact stiffness plays a central role for small oscillation amplitudes. In the present paper we consider the case of a displacement-controlled system, where the contact stiffness is small compared to the stiffness of the measuring system. It is shown that in this case the macroscopic coefficient of friction is a function of two dimensionless parameters—a dimensionless sliding velocity and dimensionless oscillation amplitude. In the limit of very large oscillation amplitudes, known solutions previously reported in the literature are reproduced. The region of small amplitudes is described for the first time in this paper.
653 _aтрение скольжения
653 _aплоскостные колебания
653 _aжесткость контакта
653 _aкоэффициент трения
655 4 _aстатьи в журналах
_9745982
700 1 _aNakano, K.
_9496948
700 1 _aPopov, Valentin L.
_996419
700 1 _aPopov, Mikhail V.
_9103051
700 1 _aBenad, J.
_9496949
773 0 _tFriction
_d2019
_gVol. 7, № 1. P. 74-85
_x2223-7690
852 4 _aRU-ToGU
856 4 _uhttp://vital.lib.tsu.ru/vital/access/manager/Repository/vtls:000660033
908 _aстатья
999 _c457420