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A performance-based optimization method for topology design of continuum structures with mean compliance constraints

机译:一种基于性能的均值约束约束连续体结构拓扑设计的优化方法

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摘要

[Abstract]: A performance-based optimization (PBO) method for optimal topology design of linear elastic continuum structures with mean compliance constraints is presented in this paper. The performance-based design concept is incorporated in continuum topology optimization, which is treated as the problem of improving the performance of a continuum design domain in terms of the efficiency of material usage and overall stiffness. A simple scheme is employed in the proposed method to suppress the formation of checkerboard patterns. Two energy-based performance indices are derived for quantifying the topology performance of plane stress structures and plates in bending. Performance-based optimality criteria incorporating performance indices are proposed, and can be used in any continuum topology optimization methods for compliance minimization problems to obtain the optimum. Numerical examples are provided to demonstrate the effectiveness and validity of the PBO method in producing optimal topologies of continuum structures.
机译:[摘要]:提出了一种基于性能的优化(PBO)方法,该方法对具有均值柔顺约束的线性弹性连续体结构进行了最佳拓扑设计。基于性能的设计概念已纳入连续体拓扑优化中,这被视为在材料使用效率和整体刚度方面提高连续体设计域性能的问题。所提出的方法中采用了一种简单的方案来抑制棋盘图案的形成。导出了两个基于能量的性能指标,用于量化弯曲时平面应力结构和板的拓扑性能。提出了结合性能指标的基于性能的最优标准,该标准可用于任何连续性拓扑优化方法中,以最小化法规遵从性问题以获得最优值。数值例子说明了PBO方法在产生最佳连续体结构拓扑中的有效性和有效性。

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