首页> 外文会议>Asian conference on multibody dynamics;ACMD 2010 >UNIFIED SYNTHESIS OF PLANAR LINKAGES FOR FUNCTION GENERATION USING THE SPRING CONNECTED SIZE-VARIABLE 3-BLOCKS MODEL
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UNIFIED SYNTHESIS OF PLANAR LINKAGES FOR FUNCTION GENERATION USING THE SPRING CONNECTED SIZE-VARIABLE 3-BLOCKS MODEL

机译:使用弹簧连接的尺寸可变的3块模型统一生成函数的平面链接

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The design of mechanical systems involves the synthesis of mechanisms in order to meet a set of kinematic requirements. Several synthesis methods, graphical, analytical and computer-aided technique, have been proposed for selecting and scaling mechanical devices. The objective is to guide a rigid body through a specified position, or to force a point on a linkage to trace out the desired trajectory curve, or to perform a specific input/output relationship. This paper is based on the last task, function generation, although the proposed method can be applied to any of them. In function generation, rotation or sliding motion of input and output links must be correlated. Extensive research has been given to the synthesis of mechanisms for the purpose of function generation based on candidate mechanism layout. However, in the initial design stage, the designer has to synthesize a combination of linkage topology and type of joints which may be best suited for a particular task. This problem may be solved by means of experience, intuition of designers. So, the systematic determination of the optimal topology and dimension of mechanisms is very important in the mechanism design process. In this paper, unified mechanism synthesis which covered the problem of type and dimensional synthesis of planar mechanisms with respect to the functional requirement of output motion is proposed. To perform the unified synthesis for function generation, a planar linkage is modeled as a set of size-variable three rigid blocks connected by zero-length translational springs with variable stiffness. The values of spring stiffness and size of rigid blocks yielding a desired output motion related to input motion at the end-effecter are found by using an optimization method. If spring stiffness values are appropriately chosen, any linkage mechanism connected by revolute and translational joints can be represented. A linkage dimensions are determined by related block size during the synthesis process.
机译:机械系统的设计涉及机制的综合,以满足一组运动学要求。已经提出了几种综合方法,包括图形,分析和计算机辅助技术,用于选择和缩放机械设备。目的是引导刚体通过指定的位置,或迫使连杆上的点找出所需的轨迹曲线,或执行特定的输入/输出关系。本文基于最后一个任务,即函数生成,尽管所提出的方法可以应用于其中任何一个。在函数生成中,必须关联输入和输出链接的旋转或滑动运动。为了基于候选机构布局的功能生成的目的,已经对机构的合成进行了广泛的研究。但是,在初始设计阶段,设计人员必须综合考虑最适合特定任务的连杆拓扑和关节类型的组合。这个问题可以通过设计者的经验和直觉来解决。因此,在机构设计过程中,系统地确定机构的最佳拓扑和尺寸非常重要。本文针对输出运动的功能要求,提出了涵盖平面机构类型和尺寸综合问题的统一机构综合方法。为了执行函数生成的统一综合,将平面链接建模为一组大小可变的三个刚性块,这些块由零长度的平移弹簧(具有可变的刚度)连接。通过使用优化方法可以找到产生与末端执行器上的输入运动相关的所需输出运动的弹簧刚度值和刚性块的大小。如果弹簧刚度值适当地选择,任何连杆机构由连接回转和平移关节可以被表示。链接尺寸由合成过程中相关的块大小确定。

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