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The lightweight topology optimization of multi-material structures with displacement constraints

机译:具有位移约束的多材料结构的轻质拓扑优化

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Multi-material Topology Optimization is a simulation technique based on the principle of the finite element method which is able to determine the optimal distribution of two or more different materials in combination under thermal and mechanical loads.This paper develops a lightweight topology optimization formulation of multi-material structures considering displacement constraints based on independent,continuous and mapping(ICM)method.Furthermore,explicit expression of optimised formulation is derived,approximations of displacement and weight are given by the first and second order Taylor expansion.And the optimization problem is solved by sequential quadratic programming approach.The feasibility and effectiveness of proposed method are demonstrated by numerical examples.It is found that the best transfer path of load is provided using multi-material topology optimization.The results show that a clear topological structure is obtained and the best transfer path of load is provided after multi-material topology optimization.In addition,under the precondition of satisfying the displacement constraint condition,the weight of the optimized structure based on various materials is lighter.The weight of multi-material topology optimization structure decreases with the increase of displacement constraint.And the optimal topological structure of the multi-material is different with the component materials.Besides,the optimization model established by using the structural performance parameters as a constraint is more reliable and more suitable for practical engineering applications.
机译:多材料拓扑优化是一种基于有限元方法原理的仿真技术,该方法能够在热和机械负载下组合确定两种或更多种不同材料的最佳分布。本文开发了多的轻质拓扑优化制剂考虑基于独立,连续和映射(ICM)方法的位移约束的材料结构。推导出优化配方的明确表达,由第一和二阶泰勒扩展给出位移和重量的近似。解决了优化问题通过顺序二次编程方法。通过数值例证明了所提出的方法的可行性和有效性。发现使用多材料拓扑优化提供了最佳的负载转移路径。结果表明获得了清晰的拓扑结构和提供了最佳转移路径AF TER多材料拓扑优化。在满足位移约束条件的前提下,基于各种材料的优化结构的重量更轻。多材料拓扑优化结构的重量随着位移约束的增加而降低。并且多材料的最佳拓扑结构与组分材料不同。基础,通过使用结构性能参数建立的优化模型是更可靠的,更适合实际工程应用。

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