The micro-mechanism of friction drive with ultrasonic wave

被引:44
|
作者
Adachi, K [1 ]
Kato, K [1 ]
Sasatani, Y [1 ]
机构
[1] TOHOKU UNIV,SCH MECH ENGN,SENDAI,MIYAGI 98077,JAPAN
关键词
friction drive; ultrasonic wave; tangential coefficient; micro-displacement;
D O I
10.1016/0043-1648(95)06826-0
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
The micro-mechanism of friction drive with ultrasonic wave was analyzed experimentally and theoretically by using a newly developed apparatus. With this apparatus,it was possible to measure the friction force at the contact interface between a rotational disk and an oscillatory pin induced by ultrasonic wave. This friction couple simulated the contact behavior of the ultrasonic wave motor. The type of pin motion (whether reciprocating or circular), its amplitude and rotational speed of disk could be controlled in this apparatus. The friction force increased with the increase of the rotational speed of disk and the decrease of the amplitude of pin motion. In the case of circular pin motion, the friction force was applied in a negative direction when the rotational speed of disk was below a critical value. The micro-mechanisms of this friction drive were analyzed theoretically by introducing a relationship between tangential coefficient and micro-displacement at the contact region, and the observed friction force as a function of the rotational speed of disk and the amplitude of pin motion was well explained by the introduced theory.
引用
收藏
页码:137 / 142
页数:6
相关论文
共 50 条
  • [1] Shear Wave Attenuation and Its Micro-Mechanism of Polymers
    Tang, Zhiping
    Li, Ting
    [J]. ADVANCED RESEARCH IN MATERIAL SCIENCE AND MECHANICAL ENGINEERING, PTS 1 AND 2, 2014, 446-447 : 249 - 253
  • [2] Mechanical behavior and micro-mechanism of carbon nanotube networks under friction
    Hu, Tianxiong
    Qian, Guian
    Wu, Xianqian
    Wang, Chao
    [J]. CARBON, 2022, 200 : 108 - 115
  • [3] Micro-mechanism analysis of enhanced oil recovery for positive-negative drive
    Zhang, Jingchen
    Wang, Mingxing
    Dong, Jingfeng
    Shi, Shanzhi
    Wang, Chenchen
    Yang, Yan
    Izuchukwu, Osuji Nicholas
    [J]. FUEL, 2020, 260
  • [4] THE MICRO-MECHANISM OF FRACTURE IN FERRITE
    BRUCKNER, WH
    [J]. ACTA METALLURGICA, 1954, 2 (01): : 168 - 169
  • [5] FUNDAMENTAL PROPERTIES OF FRICTION AND WEAR ON FRICTION DRIVE BY TRAVELING-WAVE TYPE ULTRASONIC
    HONDA, T
    KATO, K
    [J]. JOURNAL OF JAPANESE SOCIETY OF TRIBOLOGISTS, 1993, 38 (08) : 727 - 734
  • [6] A Micro-Mechanism Model for Porous Media
    WU Jin-Sui~(1
    [J]. Communications in Theoretical Physics, 2009, 52 (11) : 936 - 940
  • [7] MICRO-MECHANISM FOR FORMING REMAINING OIL
    He Qiuxuan
    [J]. Scientia Geologica Sinica, 1999, (04) : 541 - 546
  • [8] The micro-mechanism of the ageing of duralumin.
    Jeffries, Z
    [J]. JOURNAL OF THE INSTITUTE OF METALS, 1919, 22 : 329 - 333
  • [9] A Micro-Mechanism Model for Porous Media
    Wu Jin-Sui
    Yin Shang-Xian
    [J]. COMMUNICATIONS IN THEORETICAL PHYSICS, 2009, 52 (05) : 936 - 940
  • [10] Study of Rheological Properties and Micro-mechanism of Heavy Oil Emulsion Prepared via Ultrasonic Dispersion
    Li, Sheng
    Li, Zhaomin
    Xu, Zhengxiao
    Ban, Xiaochun
    Lu, Teng
    [J]. ENERGY & FUELS, 2020, 34 (12) : 15843 - 15854