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Group Link Gear Locus Modeling Based on Motion Relativity

机译:基于运动相对性的组链路齿轮基因座建模

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In order to solve the comprehensive analysis problem of the mechanism link locus and motion, this paper bring forward the parameter calculation of locus based on motion relativity and differential geometry theory. The problem of point-group calculation is thus solved, and the comprehensive analysis of motion and position is realized. Moreover, the method is simplified and the calculation accuracy is also improved. In the paper, a moving frame of axes is set up by using the lever axes to describe the complex structure of linkage. Motion relativity theory is adopted to study the overall motion rule of the structure. By using the calculation result of the linkage axes, the calculation model is set up to analyze its motion, which simplifies the point-group motion calculation. Hie point-groups form the same component have the same angle velocity, angle acceleration velocity, base point, and calculation model, which makes the calculation procedure modularized and the program shortened. Owning to complete digital a-nalysis, the characteristic parameter calculations of locus are very accurate, the data-base is easy to establish, the transfer and a-nalysis of data become convenient. This also makes it easy to establish the shape chart of the linkage locus and to analyze their resemblance. It's a useful method to analyze the locus and motion of the link gear comprehensively.
机译:为了解决机制链接轨迹和运动的综合分析问题,本文提出了基于运动相对论和差分几何理论的基因座的参数计算。因此解决了点组计算的问题,实现了运动和位置的综合分析。此外,简化了该方法,并且还改善了计算精度。在本文中,通过使用杠杆轴来设置轴的移动框架来描述连杆的复杂结构。采用运动相对论理论来研究结构的整体运动规则。通过使用连接轴的计算结果,设置计算模型以分析其运动,这简化了点组运动计算。 HIE点组形成相同的部件具有相同的角度速度,角度加速度,基点和计算模型,这使得计算过程模块化和程序缩短。拥有完成数字A-nalysis,轨迹的特征参数计算非常准确,数据库易于建立,传输和数据的数据变得方便。这也使其简单地建立联动轨迹的形状图并分析它们的相似性。它是一个有用的方法,可以全面分析链路齿轮的轨迹和运动。

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