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LARGE DEFORMATION ANALYSIS AND EXPERIMENTS WITH DOUBLE PARALLELOGRAM COMPLIANT MECHANISMS

机译:双峰学顺应机理的大变形分析与实验

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Compliant mechanisms are highly preferred in applications demanding motion with high precision. These mechanisms provide friction-less, backlash-free precise motion obtained through deformation of flexible members. The double parallelogram compliant mechanism (DPCM) is one the most important compliant mechanisms to obtain highly precise straight-line motion. DPCM when operated in horizontal plane yield high precision straight-line motion (even with large deformations) useful in several engineering applications. However, constraints such as space, dead loads, etc. may demand DPCMs to be used in the vertical plane. For DPCMs operating in a vertical plane, the axial load due to gravity causes tension and compression in flexible beams which get coupled to bending under large deformations. This ultimately affects the parasitic error of straight-line motion. This paper presents a coupled analysis, along with experimental validation, of DPCM operating in vertical plane considering gravity effects with large deformation.
机译:在要求高精度运动的应用中,顺应机构是高度优选的。这些机构通过挠性构件的变形获得了无摩擦,无反冲的精确运动。双平行四边形顺应机构(DPCM)是获得高精度直线运动的最重要的顺应机构之一。 DPCM在水平面中运行时,可产生高精度的直线运动(即使变形较大),可用于多种工程应用。但是,诸如空间,静载荷等约束条件可能要求在垂直平面上使用DPCM。对于在垂直平面上运行的DPCM,由于重力引起的轴向负载会导致柔性梁的拉伸和压缩,而柔性梁在大变形下会与弯曲相耦合。这最终会影响直线运动的寄生误差。本文介绍了考虑大变形引力影响的垂直方向上运行的DPCM的耦合分析以及实验验证。

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