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Optimization Design for Planet Carrier of Planetary Gear Reducer Based on ANSYS

机译:基于ANSYS的行星齿轮减速器行星架优化设计

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On the basis of analyzing the structure of planetary gear reducer, this paper points out that it's necessary to make use of optimization design method to improve the design level of the planetary gear reducer. The optimization model of planet carrier is established and the process of optimization design is studied. Taking the XJB80 single arm planet carrier as an example, whose optimization design is performed by using ANSYS software. The spacing of connecting panel, thickness of sidewall, the inner radius of the connecting panel and some other parameters are selected as design variables, the yield strength and structural deformation limitation of planet carrier material are selected as state variables and the total volume is selected as objective function. The optimal structure size of the planet carrier is obtained, result shows that the corresponding volume is reduced by 21%, thus the manufacturing cost can be reduced. The study result has already been used by planetary gear reducer enterprise.
机译:在分析行星齿轮减速器的结构的基础上,本文指出,有必要利用优化设计方法来改善行星齿轮减速器的设计水平。建立了行星载波的优化模型,研究了优化设计的过程。以XJB80单臂行星载体为例,通过使用ANSYS软件执行其优化设计。连接面板的间距,侧壁的厚度,连接面板的内半径和一些其他参数被选择为设计变量,选择行星载体材料的屈服强度和结构变形限制作为状态变量,并且选择总体积为目标函数。获得了行星载体的最佳结构尺寸,结果表明相应的体积减小21%,因此可以降低制造成本。该研究结果已经被行星齿轮减速机企业使用。

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