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Synthesis of a non-circular cable spool to realize a nonlinear rotational spring

机译:非圆形电缆阀芯的合成实现非线性旋转弹簧

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In this paper we present a cable mechanism which realizes a nonlinear rotational spring from a linear translational spring. The spring is pulled by a cable wound around a non-circular spool, which is rigidly attached to the joint. The non-circular shape of the spool induces a nonlinear relationship between its angular position and the torque created by the tension of the cable. Depending on the shape of the spool, various torque profiles can be realized. We show that for a given nonlinear torque profile, there is a closed-form solution of the shape of the spool which synthesizes this function. In a first part, we present the geometry of the problem. In a second part, we derive the methodology to calculate the shape of the spool to synthesize a prescribed torque profile. In the last part, we verify the design methodology by experiments with three different spools realizing a constant force spring, an exponential softening spring and a cubic polynomial spring. We discuss the possible sources of errors between the theoretical and experimental results.
机译:在本文中,我们介绍了一种电缆机构,该电缆机构从线性翻译弹簧实现了非线性旋转弹簧。弹簧被缠绕在非圆形阀芯上的电缆拉动,该电缆刚性地连接到关节。卷轴的非圆形形状在其角度位置和由电缆的张力产生的扭矩之间引起非线性关系。取决于卷轴的形状,可以实现各种扭矩轮廓。我们表明对于给定的非线性扭矩曲线,存在卷轴形状的封闭溶液,其合成该功能。在第一部分中,我们介绍了问题的几何形状。在第二部分中,我们推导出方法来计算阀芯的形状以合成规定的扭矩曲线。在最后一部分中,我们通过用三种不同的线轴实现设计方法,实现恒定力弹簧,指数软化弹簧和立方多项式弹簧。我们讨论了理论和实验结果之间的可能误差源。

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