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Building block method: a bottom-up modular synthesis methodology for distributed compliant mechanisms

机译:构件方法:适用于分布式兼容机制的自下而上的模块化综合方法

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Synthesizing topologies of compliant mechanisms are based on rigid-link kinematic designs or completely automated optimization techniques. These designs yield mechanisms that match the kinematic specifications as a whole, but seldom yield user insight on how each constituent member contributes towards the overall mechanism performance. This paper reviews recent developments in building block based design of compliant mechanisms. A key aspect of such a methodology is formulating a representation of compliance at a (i) single unique point of interest in terms of geometric quantities such as ellipses and vectors, and (ii) relative compliance between distinct input(s) and output(s) in terms of load flow. This geometric representation provides a direct mapping between the mechanism geometry and their behavior, and is used to characterize simple deformable members that form a library of building blocks. The design space spanned by the building block library guides the decomposition of a given problem specification into tractable sub-problems that can be each solved from an entry in the library. The effectiveness of this geometric representation aids user insight in design, and enables discovery of trends and guidelines to obtain practical conceptual designs.
机译:顺应性机制的综合拓扑基于刚性链接运动学设计或全自动优化技术。这些设计产生的机构总体上符合运动学规范,但很少让用户了解每个组成成员如何对整体机构性能做出贡献。本文回顾了基于构件的顺应性设计的最新进展。这种方法的一个关键方面是在(i)单个独特的兴趣点上根据诸如椭圆和矢量的几何量,以及(ii)不同输入和输出之间的相对顺从性来表示顺应性表示。 )的潮流。这种几何表示形式提供了机构几何结构及其行为之间的直接映射,并用于表征构成构件库的简单可变形构件。构件库所跨越的设计空间可将给定的问题规范分解为易于处理的子问题,每个子问题都可以从库中的条目中解决。这种几何表示的有效性有助于用户洞察设计,并能发现趋势和指导方针,以获得实用的概念设计。

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