期刊论文详细信息
Processes
Static and Dynamic Analysis of a 6300 KN Cold Orbital Forging Machine
Zhiqiang Gu1  Chaoyang Wang1  Mingzhang Chen1  Wuhao Zhuang1 
[1] School of Automotive Engineering, Wuhan University of Technology, Wuhan 430070, China;
关键词: cold orbital forging;    finite element analysis;    theoretical analysis;    numerical simulation;    experimental analysis;    static analysis;   
DOI  :  10.3390/pr9010007
来源: DOAJ
【 摘 要 】

In cold orbital forging (COF) processes, large stress, displacement and vertical vibration of the COF machine are bad for the quality of the part and the fatigue life of the COF machine. It is necessary to investigate the static and dynamic performance of the COF machine and provide methods for reducing the stress, displacement and vertical vibration of the COF machine. In this paper, finite element analysis, theoretical analysis, numerical simulation and experimental analysis were applied to study the static and dynamic performance of a 6300 KN COF machine. The static and dynamic analyses were verified effectively by carrying out strain and vertical vibration test experiments. In the static analysis, the large stress and displacement positions of the COF machine were mainly distributed near the working table and the junction between the working table and the column. Large stress and displacement will be bad for the quality of the part and the fatigue life of the COF machine. Structural optimizations of the COF machine include ribbed plates on the working table and beam. This structural optimization method of the COF machine obviously reduced the stress and displacement of the COF machine. When the angular velocities of the eccentric rings were 8π rad/s, the vertical vibration of the swing shaft is a low-frequency vibration. The existence of absorber obviously reduced the vertical vibration of the COF machine.

【 授权许可】

Unknown   

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