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A Multi-point constraints based integrated layout and topology optimization design of multi-component systems

机译:基于多点约束的多组件系统集成布局和拓扑优化设计

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The integrated layout and topology optimization is to find proper layout of movable components and topology patterns of their supporting structures, where two kinds of design variables, i.e. the structural pseudo-densities and the components' locations are optimized simultaneously. The purpose of this paper is to demonstrate a new multi-point constraints (MPC) based method where the rivets or bolts connections between the components and their supporting structures are introduced. The displacement consistence involved in the MPC is strictly maintained which makes the components to carry the loads together with the supporting structures. Moreover, more benefits like avoidance of finite element remeshing and precise geometry of the components can be obtained. In particular, sensitivities with respect to the components' locations can be analytically and efficiently achieved by deriving the MPC equations. Finally, several numerical examples are tested and discussed to demonstrate the validity of the proposed method.
机译:集成布局和拓扑优化是为了找到可移动部件的正确布局及其支撑结构的拓扑模式,在此同时优化两种设计变量,即结构伪密度和部件位置。本文的目的是演示一种新的基于多点约束(MPC)的方法,其中介绍了组件及其支撑结构之间的铆钉或螺栓连接。 MPC中涉及的位移一致性得到严格维护,这使得部件将载荷与支撑结构一起承载。而且,可以获得诸如避免有限元重新网格化和部件的精确几何形状的更多益处。尤其是,可以通过推导MPC方程来分析和有效地实现相对于组件位置的敏感性。最后,对几个数值示例进行了测试和讨论,以证明所提方法的有效性。

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