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Bistable Configurations of Compliant Mechanisms Modeled Using Four Links and Translational Joints

机译:使用四个链接和平移关节建模的柔顺机构的双稳态配置

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Bistable mechanical devices remain stable in two distinct positions without power input. They find application in valves, switches, closures, and clasps. Mechanically bistable behavior results from the storage and release of energy, typically in springs, with stable positions occurring at local minima of stored energy. Compliant mechanisms offer an elegant way to achieve this behavior by incorporating both motion and energy storage into the same flexible element. Interest in compliant bistable mechanisms has also recently increased because of the advantages of bistable behavior in many micro-electromechanical systems (MEMS). Design of compliant or rigid-body bistable mechanisms typically requires simultaneous consideration of both energy storage and motion requirements. This paper simplifies this process by developing theory that provides prior knowledge of mechanism configurations that guarantee bistable behavior. Configurations which include one or more translational, or slider, joints are studied in this work. Several different mechanism types are analyzed to determine compliant segment placement that will ensure bistable mechanism operation. Examples demonstrate the power of the theory in design.
机译:双稳态机械装置在没有电源输入的情况下在两个不同的位置保持稳定。它们可用于阀门,开关,闭合件和卡扣中。机械双稳态行为是由能量的存储和释放产生的,通常在弹簧中,并且在存储的能量的局部最小值处出现稳定的位置。顺应性机制通过将运动存储和能量存储都合并到同一柔性元素中,提供了一种实现此行为的绝佳方法。由于在许多微机电系统(MEMS)中具有双稳态特性的优势,最近对顺应双稳态机制的兴趣也有所增加。顺应性或刚体双稳态机构的设计通常需要同时考虑能量存储和运动要求。本文通过发展理论来简化此过程,该理论提供了保证双稳态行为的机制配置的先验知识。在这项工作中,将研究包括一个或多个平移或滑动接头的构型。分析了几种不同的机制类型,以确定可确保双稳态机制运行的顺应性分段放置。实例证明了该理论在设计中的力量。

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