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Analysis of Finite Element and Optimization Design of Mechanical Excavator Rotary Platform

机译:机械挖掘机旋转平台有限元和优化设计分析

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The mechanical excavator is the essential equipment for open-pit mining. The rotary platform is main bearing part of the excavator, stiffness and strength are directly related to the safety of the excavator. The rotary platform of a mechanical excavator is applied as the research object. The Shell181 and Solid 95 unit are used to establish finite element model based on analyzing the structural characteristics. MPC technology is applied to solve the coupling problem of the shell and the solid element. Taking the total weight of platform as the objective function of optimization, stiffness and strength condition as constraint conditions, the section thickness of the platform main components as the design variables, the structural optimization of the platform has been completed, and the weight decrease by 6.55%. A new way has been explored to make the design of platform structure more economic and reasonable, and improve the design efficiency.
机译:机械挖掘机是露天采矿的必备设备。旋转平台是挖掘机的主要轴承部分,刚度和强度与挖掘机的安全性直接相关。机械挖掘机的旋转平台作为研究对象应用。 Shell181和固体95单元用于建立基于分析结构特征的有限元模型。应用MPC技术来解决壳和固体元素的耦合问题。将平台的总重量作为优化,刚度和强度条件的目标函数作为约束条件,平台的截面厚度为设计变量,平台的结构优化已经完成,重量减少6.55 %。已经探索了一种新的方式,使平台结构设计更加经济合理,提高设计效率。

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