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COMBINING INVERSE DYNAMICS WITH TRADITIONAL MECHANISM SYNTHESIS TO IMPROVE THE PERFORMANCE OF HIGH SPEED MACHINERY

机译:与传统机理合成相结合的逆动力学,提高高速机械性能

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This paper describes a unique, computer-based, mechanism design strategy that takes into account both kinematic and dynamic performance criteria at the synthesis stage of the design process. The strategy can be used to investigate improvements in the design of any existing mechanism with geometric redundancy in its output path. By iteratively varying the form of this redundant portion of the output path, alternative potentially better mechanism designs can be generated using a traditional mechanism synthesis and kinematic analysis method. The generated designs with the most desirable kinematic characteristics can be selected and analyzed using a multi-body, dynamic modeling and analysis tool. Using forward and inverse dynamic analysis the quality of the designs can be quantified. This paper describes work done to apply the strategy to an existing mechanism. An alternative mechanism design was identified with superior dynamic qualities. Kinematic performance was not sacrificed.
机译:本文介绍了一种独特的计算机,机制设计策略,其考虑了设计过程的合成阶段的运动和动态性​​能标准。该策略可用于调查其输出路径中的几何冗余设计的改进。通过迭代地改变输出路径的该冗余部分的形式,可以使用传统的机构合成和运动学分析方法来产生替代潜在的机制设计。可以使用多体,动态建模和分析工具选择和分析具有最期望的运动特性的产生的设计。使用前向和逆动态分析设计的质量可以量化。本文介绍了将策略应用于现有机制的工作。识别出具有优越的动态品质的替代机制设计。没有牺牲运动表现。

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