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STRUCTURAL ANALYSIS AND TOPOLOGY OPTIMIZATION OF A BENT-BAR-FRAME PISTON BASED ON THE VARIABLE DENSITY APPROACH

机译:基于变密度方法的弯曲杆框架活塞结构分析与拓扑优化

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摘要

The iterative algorithm of design variables for structural topology optimization is derived by using variable density approach and Finite Element Method. A coupled model of bent-bar-frame piston is built considering the contact between piston and cylinder, piston and piston pin, piston pin and connecting rod. Based on this model, the deformation and stress of piston are analyzed under each of mechanical or thermal loading. Taking structural weight as the objective function of optimization, three desired regions of piston are optimized by using variable density approach in commercial FEA software HYPERMESH and ANSYS. Finally, the deformation and temperature of the optimized model are compared with prototype by using the same loading and boundary conditions. The results show that the weight of piston is reduced by 12.5% while meeting the required specifications.
机译:利用变密度法和有限元法推导了结构拓扑优化设计变量的迭代算法。考虑到活塞与气缸,活塞与活塞销,活塞销与连杆之间的接触,建立了弯杆框架活塞的耦合模型。基于该模型,分析了机械或热负荷下活塞的变形和应力。将结构重量作为优化的目标函数,在商业有限元分析软件HYPERMESH和ANSYS中使用可变密度方法对活塞的三个所需区域进行了优化。最后,在相同的载荷和边界条件下,将优化模型的变形和温度与原型进行比较。结果表明,在满足所需规格的同时,活塞的重量减少了12.5%。

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