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A new method to design compliant mechanisms based on the inverse beam finite element model

机译:基于反梁有限元模型的柔顺机构设计新方法

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摘要

The motivation of this work is to introduce the inverse finite element method (IFEM) as a new method for the design of compliant mechanisms that must fit a prescribed shape after undergoing large elastic deformations under known service loads. This specific task is typical of a variety of mechanisms where the deformed shape and the responsible loads are known, while the problem is to determine the unloaded shape, i.e., the manufacturing shape of the mechanism. The potentialities and the limitations of the IFEM are shown with three applications in the medical field: 1) a microgripper whose deformed shape is dictated by the object to hold; 2) a valve that must by-pass a prescribed flow rate when it is deformed under a prescribed pressure; and 3) a folder of an intra-ocular lens (IOL) whose deformed shape is determined by the optimal shape of the folded IOL.
机译:这项工作的目的是引入逆有限元法(IFEM)作为设计柔顺机构的新方法,该柔顺机构必须在已知的工作载荷下经历较大的弹性变形后必须符合规定的形状。该特定任务是各种机构的典型特征,其中已知变形的形状和负责的载荷,而问题是确定卸载的形状,即机构的制造形状。 IFEM的潜力和局限性在医学领域的三个应用中得到了展示:1)微型夹具,其变形形状取决于所握持的物体; 2)在规定压力下变形时必须旁路规定流量的阀; 3)人工晶状体(IOL)的折叠器,其变形形状由折叠的IOL的最佳形状确定。

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