Kinematics of Hooke’s Joint

M. Podrigalo, Volodymyr Peregon, Oleksandr Boboshko, Dmitrij Bogdan, O. Koriak
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Abstract

Problem. An analysis of the literature has shown that some issues of the kinematics and dynamics of the Hooke’s joint are not fully covered. In particular, this applies to the determination of the kinematic characteristics of the relative movements of the links in the movable joints of the crosspieces and cardan yokes, as well as the acceleration of the crosspiece in the study of the hinge. These kinematic characteristics are the basis for dynamic analysis of the cardan transmission; they are used at research of operation of the bearings of a cardan joint cross; they are necessary to determine the energy expended to overcome the forces of friction in these kinematic pairs; they form the basis for evaluating transmission efficiency. Goal. The goal of this work is to determine the kinematic characteristics of the cross in its absolute and relative motions. Methodology. The research is based on the graphical and analytical method of kinematic analysis of spherical motion of a rigid body. At the initial stage, the calculated dependences for determining the angular velocity of the cross in its absolute and relative motions were obtained. The relative angles of rotation of the links in the movable joints of the crosspiece and cardan yokes were determined by integrating the corresponding differential equations. To determine the angular acceleration of the crosspiece, the theorem on the addition of angular accelerations of a rigid body rotating around two non-parallel axes was used. Results. The study of the kinematics of the cardan joint made it possible to identify and eliminate ambiguities in determining the relative angular velocities of the elements of the kinematic pairs of the cross and cardan yokes. Functional dependences for determination of angular acceleration of a crosspiece in absolute and relative movements, and also relative angles of rotation of links in kinematic pairs of a crosspiece and cardan yokes were received. It was shown that the angular acceleration of the crosspiece is a periodic function of the angle of rotation of the input link. During the operation of the hinge, the crosspiece creates insignificant periodic dynamic loads, which should be taken into account in accurate calculations of high-speed cardan transmissions. Practical value. The work is devoted to the study of the kinematics of the asynchronous hinge, which is the foundation for its dynamic analysis and ultimately aimed at improving the output performance of the cardan transmission. The research method combines mathematical calculations with simplicity and clarity of graphic constructions, which contributes to a deeper understanding of the kinematic features of a hinge of uneven angular velocities. The obtained results can be used in the design and study of motor-transmission units, which include the Hooke’s joint.
胡克关节的运动学
问题。对文献的分析表明,胡克关节的运动学和动力学的一些问题没有完全涵盖。特别是,这适用于确定横梁和万向节的活动关节中连杆的相对运动的运动学特性,以及铰链研究中横梁的加速度。这些运动特性是万向传动动力学分析的基础;它们用于万向节十字轴承的工作研究;它们对于确定克服这些运动副中的摩擦力所消耗的能量是必要的;它们构成了评估传输效率的基础。的目标。这项工作的目的是确定在其绝对和相对运动的十字架的运动学特性。方法。本研究基于刚体球面运动运动学分析的图解和解析方法。在初始阶段,计算得到了确定十字架在绝对运动和相对运动中的角速度的依赖关系。通过对相应的微分方程进行积分,确定了横梁和万向节活动关节中连杆的相对旋转角度。为了确定横截面的角加速度,采用了绕两个非平行轴旋转的刚体角加速度相加定理。结果。万向关节运动学的研究使确定和消除在确定十字和万向轭运动副的元素的相对角速度时的歧义成为可能。得到了确定横板绝对运动和相对运动中角加速度的函数依赖关系,以及横板和万向轭运动副中连杆的相对旋转角度。结果表明,横截面的角加速度是输入连杆旋转角度的周期函数。在铰链运行过程中,横梁产生的周期性动载荷较小,在高速万向传动的精确计算中应予以考虑。实用价值。本文对异步铰链的运动学进行了研究,这是对异步铰链进行动力学分析的基础,最终目的是提高万向传动的输出性能。该研究方法将数学计算与图形构造的简单明了相结合,有助于对非均匀角速度铰链的运动学特征有更深入的了解。所得结果可用于包括胡克关节在内的电机传动单元的设计和研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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