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Utility of Matrix Algebra and Graphical User Interface in Design of Six-bar Mechanism for Rectilinear Motion Generation

机译:矩阵代数和图形用户界面设计直线运动生成的六个条形机构设计

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Many applications require design of a linkage that executes a rectilinear motion. In this study a synthesis procedure for six-bar mechanism for generation of rectilinear motion is presented. To achieve this goal, matrix algebra is used to describe translation, rotation, and inversion of motion of links. These concepts then are used to implement the classical three- precision point synthesize of a four-bar mechanism with a coupler point that traces a straight line. The motion of this four-bar mechanism is inverted and then is used to synthesize a second four-bar mechanism. The merging of these two four-bar mechanisms forms a six-bar mechanism such that the motion of one link is rectilinear motion. To implement this procedure, a graphical user interface is developed for the ease of exploring the design space. The utility of this approach is demonstrated by designing a linkage for a lift-truck.
机译:许多应用需要设计执行直线运动的链接。在该研究中,提出了一种用于产生直线运动的六个条形机构的合成过程。为了实现这一目标,矩阵代数用于描述链接运动的翻译,旋转和反转。然后,这些概念用于实现具有追踪直线的耦合点的四个条形机构的经典三极度点合成。该四个条机构的运动反转,然后用于合成第二四个条机构。这两个四个条形机构的合并形成六个条形机构,使得一个链路的运动是直线运动。为了实现此过程,开发了一种图形用户界面,用于易于探索设计空间。通过设计升降卡车的联系来证明这种方法的效用。

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