
Precision Control Technology and Device for Miniature Bearing Assembly
Author(s) -
Yingang Li,
Fēi Li,
Yang Pu,
Hui Zhu,
Guohong Ma,
Xin Jin
Publication year - 2021
Publication title -
journal of physics. conference series
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.21
H-Index - 85
eISSN - 1742-6596
pISSN - 1742-6588
DOI - 10.1088/1742-6596/1820/1/012178
Subject(s) - clamping , linkage (software) , bearing (navigation) , mechanism (biology) , automation , connecting rod , tension (geology) , macro , mechanical engineering , rod , computer science , engineering , engineering drawing , artificial intelligence , materials science , medicine , biochemistry , chemistry , philosophy , alternative medicine , epistemology , pathology , ultimate tensile strength , metallurgy , gene , programming language
The traditional assembly equipment of tension link components has a degree of automation and few types of equipment, which have a greater impact on the assembly quality, assembly accuracy, and assembly efficiency of the linkage mechanism. This article firstly combines the current assembly status of the tension connecting rod components in my country and proposes a high-precision press-fitting method for connecting rods with continuous clamping, alignment, press-fitting, and pre-tightening actions. Secondly, an assembly platform for high-precision automatic press-fitting of tension connecting rods was developed and designed, and the structure design of the high-precision tension connecting rod press-fitting platform and the working principle of each module were explained, including a non-destructive clamping mechanism, a two-degree-of-freedom macro-motion platform, and vision alignment module, and other designs. Then through the assembly force experiment, the distribution of the bearing press-fitting force is obtained. The platform can increase the assembly coaxially of the 10mm inner bearing to within 5μm.