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Design of High-Stiffness Five-Bar and Seven-Bar Linkage Structures by Using the Concept of Orthogonal Paths

机译:基于正交路径概念的高刚度五连杆和七连杆机构设计

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摘要

This paper presents a new approach for the synthesis of high-stiffness five-bar and seven- bar linkage structures based on the concept of orthogonal paths. The intersection point of two orthogonal paths is the location of a floating joint at which the motion is prevented to the maximum degree. Instead of analyzing link materials, deformations, and joint clearances, the approaches here provide designers with another way to obtain the geometrical configurations of five-bar and seven-bar linkage structures with high stiffness from a kinematic point of view. Two types of linkage structures, five-bar and seven-bar linkages, will be used for high-stiffness synthesis. The complete design procedures are presented for two different cases of each type.
机译:本文提出了一种基于正交路径概念的高刚度五杆和七杆连杆结构综合方法。两条正交路径的交点是浮动关节的位置,在该位置处最大程度地防止了运动。从运动学的角度来看,这里的方法不是分析链节材料,变形和接头间隙,而是为设计人员提供了另一种方法来获得具有高刚度的五连杆和七连杆连杆结构的几何构型。五连杆和七连杆两种类型的连杆结构将用于高刚度合成。针对每种类型的两种不同情况,提供了完整的设计过程。

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