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Topology optimization method with elimination of enclosed voids

机译:拓扑优化方法消除封闭空隙

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摘要

In this paper, a side constraint scheme is presented for topology optimization considering structural connectivity. Void features are used as basic design primitives with their movements and shape changes to drive topology optimization. To ensure the structural connectivity, design variables related to the centers of all the void features are bounded outside the design domain by means of side constraints without introducing additional nonlinear constraints. It is shown that the side constraint scheme is effective to eliminate enclosed voids and well adapted to the additive manufacturing (AM) without concern of unmelted powders inside the structure. Several representative examples are tested to demonstrate the effectiveness of the proposed method.
机译:在本文中,介绍了考虑结构连通性的拓扑优化的侧约束方案。 void功能用作基本设计原语,其动作和形状变化以驱动拓扑优化。 为了确保结构连接,与所有空隙特征的中心相关的设计变量通过侧面约束在设计领域之外界定,而不会引入额外的非线性约束。 结果表明,侧限制方案可有效地消除封闭的空隙,并且很好地适应添加剂制造(AM),而不担心结构内的未熔接粉末。 测试了几种代表性实例以证明所提出的方法的有效性。

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