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A Design System for Six-Bar Linkages Integrated With a Solid Modeler

机译:与Solid Modeler集成的六连杆机构设计系统

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This paper presents a design system for planar and spherical six-bar linkages, which is integrated with a solid modeler. The user specifies a backbone 3R chain in five task configurations in the sketch mode of the solid modeler and executes the design system. Two RR constraints are computed, which constrain the 3R chain to a single degree-of-freedom six-bar linkage. There are six ways that these constraints can be added to the 3R serial chain to yield as many as 63 different linkages in case of planar six-bar linkages and 165 in case of spherical six-bar linkages. The performance of each candidate is analyzed, and those that meet the required task are presented to the designer for selection. The design algorithm is run iteratively with random variations applied to the task configurations within user-specified tolerance zones, to increase the number of candidate-designs. The output is a solid model of the six-bar linkage. Examples are presented, which demonstrate the effectiveness of this strategy for both planar and spherical linkages.
机译:本文提出了一种用于平面和球形六连杆机构的设计系统,该系统与实体建模器集成在一起。用户以实体建模器的草图模式在五个任务配置中指定主干3R链并执行设计系统。计算了两个RR约束,这些约束将3R链约束为单个自由度六连杆。可以通过6种方式将这些约束添加到3R串行链中,以产生多达63种不同的连杆(在平面六连杆机构情况下)和165在球形六连杆机构情况下。分析每个候选人的表现,并将满足要求的任务的表现呈现给设计者以供选择。在用户指定的公差范围内将随机变化应用于任务配置的情况下,迭代运行设计算法,以增加候选设计的数量。输出是六连杆机构的实体模型。给出了一些示例,这些示例说明了该策略对平面和球形链接的有效性。

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