首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >A new indexing motion program for optimum designs of Geneva mechanisms with curved slots
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A new indexing motion program for optimum designs of Geneva mechanisms with curved slots

机译:一种新的索引运动程序,实现弯曲槽的日内瓦机制的最佳设计

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A curved slotted Geneva mechanism can eliminate the adversely infinite angular jerks of the Geneva wheel and might reduce the peak angular acceleration of the Geneva wheel by using a proper indexing motion program. In the literature, the cycloidal, fifth-order polynomial and modified sine indexing motion programs are frequently used for curved slotted Geneva mechanisms. To achieve the better kinematic performance of the curved slotted Geneva wheel than that obtained using the above-mentioned indexing motion programs, a new indexing motion program based on the Hermite interpolating polynomial is proposed for an optimum design with the goals of minimizing the peak angular acceleration and eliminating the adversely infinite angular jerks. The domain of the indexing position function is divided into several segments. Each segment is termed an element, and both ends of each segment are termed nodes. The nodal values of the indexing position function and its derivatives are used as design variables. The position function for each element can be described using the Hermite interpolating polynomial and the design variables. The reason behind the use of the Hermite interpolating polynomial is that the design variables have the clear physical meanings. The four-level Hermite interpolating polynomial is used and two elements are sufficient to obtain the optimum results. In addition, the constraint regarding the radius of curvature of the profile of the inner slot is proposed to prevent sharp curvature of the profile of the inner slot. The findings show that there is a decline in the peak acceleration of the Geneva wheel with six curved slots for the optimum results obtained using the proposed indexing motion program by 33.4% and 24.3%, respectively, as compared with the cycloidal and modified sine indexing motion programs.
机译:弯曲的开槽日内瓦机构可以消除日内瓦轮的不含无限的角振动,并且可以通过使用适当的索引运动程序来降低日内瓦轮的峰角加速。在文献中,摆线,第五级多项式和修改的正弦索引运动程序经常用于弯曲的节奏日内瓦机构。为了实现比使用上述索引运动程序获得的弯曲开槽的日内瓦轮的更好的运动性能,提出了一种基于Hermite内插多项式的新索引运动程序,以实现最佳设计,以最小化峰角加速度的目标并消除不利的无限角膜。索引位置函数的域分为几个段。每个段称为元素,每个段的两端都被称为节点。索引位置功能及其衍生物的节点值用作设计变量。可以使用Hermite内插多项式和设计变量来描述每个元件的位置功能。使用Hermite插值多项式背后的原因是设计变量具有清晰的物理含义。使用四级Hermite内插多项式,并且两个元件足以获得最佳结果。另外,提出了关于内槽轮廓的曲率半径的约束,以防止内槽的轮廓的尖锐曲率。该研究结果表明,日内瓦轮的峰值加速度下降,具有六个弯曲槽,用于分别使用所提出的分度运动程序获得的最佳结果,分别与摆线和修改的正弦索引运动相比,分别使用33.4%和24.3%获得了33.4%和24.3%程式。

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