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Lightweight design of large scale theodolite's turntable based on topology optimization of continuum structure

机译:基于连续体结构拓扑优化的大型经纬仪转台轻量化设计

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In order to solve the problem that the weight of large scale theodolite's casting or steel plate welded structure is too heavy, lightweight design of large scale turntable based on topology optimization of continuum structure is investigated. Topology optimization could have better optimization efficiency because it can provide the optimized distribution of material and gain optimized structure in conceptual design phase of the structural design. In order to obtain lightweight and high stiffness structure, a truss turntable based on topology optimization of continuum structure is presented, and the validity of this lightweight structure is examined by finite element analysis. Comparing to the traditional welding steel turntable, the lightweight turntable, without changing the static displacement, can lose 386.48 kg(lightweight ratio is 26.7%), and its first-order natural frequency raises from 167.02Hz to 173.71Hz. Meanwhile, in other aspects this turntable also has better performance than traditional structure.
机译:为了解决大型经纬仪铸件或钢板焊接结构重量过大的问题,研究了基于连续体结构拓扑优化的大型转盘轻量化设计。拓扑优化可以提供更好的优化效率,因为它可以在结构设计的概念设计阶段提供优化的材料分布并获得优化的结构。为了获得轻量化和高刚度的结构,提出了一种基于连续体结构拓扑优化的桁架转台,并通过有限元分析验证了其有效性。与传统的焊接钢转盘相比,这种轻巧的转盘在不改变静态位移的情况下,可以减少386.48 kg(重量比为26.7%),其一阶固有频率从167.02Hz升高至173.71Hz。同时,在其他方面,该转盘也具有比传统结构更好的性能。

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