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SPARSE MONOLITHIC COMPLIANT MECHANISMS USING CONTINUUM STRUCTURAL TOPOLOGY OPTIMIZATION

机译:连续结构拓扑优化的稀疏单相容机制

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摘要

A formulation for design of continuous, hinge-free compliant mechanisms is developed and examined within a continuum structural topology optimization framework. The proposed formulation involves solving two nested optimization problems. In the inner problem the arrangement of a constrained amount of structural material is optimized to maximize the mechanism's mutual potential energy in response to a force loading at the input port while working against artificial springs on the input and output ports. As the relative stiffness of the artificial springs increases, the material continuity of the mechanism also increases to the point where de facto "hinge" regions are eliminated. In the outer problem, one solves for an appropriate amount of structural material that yields the desired compliance characteristics of the mechanism when working against the workpiece resistance. Different aspects of the proposed formulation are demonstrated on a number of examples and discussed.
机译:在连续结构拓扑优化框架内开发并检查了用于设计连续,无铰链顺应机构的公式。提出的公式涉及解决两个嵌套的优化问题。在内部问题中,有限量的结构材料的布置被优化以响应于输入端口上的力负载而最大化机构的相互势能,同时抵抗输入端口和输出端口上的人造弹簧。当人造弹簧的相对刚度增加时,该机构的材料连续性也增加到实际上消除了“铰链”区域的程度。在外部问题中,解决了一种适量的结构材料,该材料在抵抗工件阻力的情况下可产生所需的机构柔顺特性。所提出的配方的不同方面在许多实例上得到了证明和讨论。

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