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首页> 外文期刊>Journal of Mechanisms and Robotics: Transactions of the ASME >Extended Static Modeling and Analysis of Compliant Compound Parallelogram Mechanisms Considering the Initial Internal Axial Force
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Extended Static Modeling and Analysis of Compliant Compound Parallelogram Mechanisms Considering the Initial Internal Axial Force

机译:考虑初始内轴向力的扩展静态建模和柔顺复合平行四边形机构的分析

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摘要

Extended nonlinear analytical modeling and analysis of compound parallelogram mechanisms are conducted in this paper to consider the effect of the initial internal axial force. The nonlinear analytical model of a compound basic parallelogram mechanism (CBPM) is first derived incorporating the initial internal axial force. The stiffness equations of compound multibeam parallelogram mechanisms (CMPMs) are then followed. The analytical maximal stress under the primary actuation force only is also derived to determine the maximal primary motion (motion range). The influence of initial internal axial forces on the primary motion/stiffness is further quantitatively analyzed by considering different slenderness ratios, which can be employed to consider active displacement preloading control and/or thermal effects. The criterion that the primary stiffness may be considered "constant" is defined and the initial internal axial force driven by a temperature change is also formulated. A physical preloading system to control the initial internal axial force is presented and testing results of the object CBPM are compared with theoretical ones.
机译:考虑到初始内部轴向力的影响,本文对复合平行四边形机构进行了扩展的非线性分析建模和分析。首先结合初始内部轴向力,得出复合基本平行四边形机构(CBPM)的非线性分析模型。然后遵循复合多光束平行四边形机构(CMPM)的刚度方程。仅在主驱动力作用下的分析最大应力也被导出以确定最大主运动(运动范围)。通过考虑不同的细长比,可以进一步定量分析初始内部轴向力对主运动/刚度的影响,可以将它们用于考虑主动位移预紧控制和/或热效应。定义了可以将主要刚度视为“恒定”的标准,还制定了由温度变化驱动的初始内部轴向力。提出了一种用于控制初始内部轴向力的物理预加载系统,并将对象CBPM的测试结果与理论值进行了比较。

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