杨波,江晨,冯立杰,吴从焰,周思浩,张伟. 面向自动化物料传送的被动驱动托架设计与分析[J]. 航空制造技术, 2021, 64(1/2): 94-98. YANG Bo, JIANG Chen, FENG Lijie, WU Congyan, ZHOU Sihao, ZHANG Wei. Design and Analysis of Passive Drive Brackets for Automatic Material Transfer. Aeronautical Manufacturing Technology, 2021, 64(1/2): 94-98.
YANG Bo, JIANG Chen, FENG Lijie, et al. Design and Analysis of Passive Drive Brackets for Automatic Material Transfer[J]. Aeronautical Manufacturing Technology, 2021, 64(1/2).
杨波,江晨,冯立杰,吴从焰,周思浩,张伟. 面向自动化物料传送的被动驱动托架设计与分析[J]. 航空制造技术, 2021, 64(1/2): 94-98. YANG Bo, JIANG Chen, FENG Lijie, WU Congyan, ZHOU Sihao, ZHANG Wei. Design and Analysis of Passive Drive Brackets for Automatic Material Transfer. Aeronautical Manufacturing Technology, 2021, 64(1/2): 94-98. DOI: 10.16080/j.issn1671-833x.2021.01/02.094.
YANG Bo, JIANG Chen, FENG Lijie, et al. Design and Analysis of Passive Drive Brackets for Automatic Material Transfer[J]. Aeronautical Manufacturing Technology, 2021, 64(1/2). DOI: 10.16080/j.issn1671-833x.2021.01/02.094.
Aiming at the development trend of product transfer automation and assembly digitization of the existing spacecraft digitization assembly line. A set of full-process transshipment equipment compatible with the production line and a multi-geometry bracket are designed. Based on the analysis of product transfer process
guarantee requirements and assembly requirements
a general design scheme of passive drive bracket based on power source of roller is proposed. The key force parts and weak points of the bracket are analyzed. Meanwhile
the design
calculation and verification of key components were carried out. In addition
the numerical simulation analysis and verification were carried out using special software. After the trial production of the bracket was completed
the engineering trial was carried out. The results showed that the deviations of the numerical simulation of strength and calculation values of theoretical design of the key components are within 10%
and the displacement deformation is kept below 0.1mm
which verifies the accuracy and rationality of the design. The function and performance of the bracket meet the requirements of on-site use during the engineering application stage.