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A multi-point constraints based layout design of multi-component systems

机译:基于多点约束的多组件系统布局设计

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The primary purpose of this paper was to present an efficient method to implement the layout design of multi-component systems. In this study, two kinds of design variables: topology variables and geometry variables are simultaneously optimized to maximize the structure stiffness. The multi-point constraints (MPC) are used to simulate the connection behavior between these movable components and supporting structure. So during the optimization iterations, mesh regeneration caused by moving components is avoided compared to the linkage of nodal coincidence. At the same time, the precise geometry shapes and properties of components are maintained to reduce the model building error. At the last of the paper, the numerical example is presented to show the validity of this method.
机译:本文的主要目的是提出一种有效的方法来实现多组件系统的布局设计。在这项研究中,同时优化了两种设计变量:拓扑变量和几何变量,以最大化结构刚度。多点约束(MPC)用于模拟这些可移动部件和支撑结构之间的连接行为。因此,在优化迭代过程中,与节点重合的链接相比,避免了由运动分量引起的网格再生。同时,保持零件的精确几何形状和特性以减少模型构建错误。最后,通过数值例子说明了该方法的有效性。

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