The investigation of a physical pendulum motion, which move along a horizontal axis

IF 0.3 Q4 PHYSICS, MULTIDISCIPLINARY
O. Lyashuk, L. Serilko, D. Serilko, І. Hevko, I. Lutsiv, Y. Vovk, M. Levkovich, O. Tson
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Abstract

The article presents a study of the physical pendulum, taking into account the force of friction in the kinematic pair, as a result of which oscillations are damped. Graphs of the dependence of the pendulum deflection angle α and the angular velocity on time for different values of the velocity v have been given. It has been established that the speed of the sleeve significantly reduces the amplitude and angular velocity of the pendulum, and the frequency of its oscillations does not depend on the presence of dry friction in the system. The dependences of the change in the amplitude of pendulum oscillations have been given and the results of numerical integration of the differential equation of pendulum motion have been obtained. The graphical dependences of the pendulum deflection angle and the movement of the sleeve x along the horizontal axis from time to time have been obtained at different values of the coefficient of friction. It has been found that during the first five seconds of the system movement, the axial speed of the sleeve is practically independent of the coefficient of friction (at f = 0.3… 0.5). To verify the obtained results, an experimental laboratory installation has been designed and manufactured. Theoretical studies are satisfactorily consistent with experimental data, with an error not exceeding 16%. The obtained dependencies can be used in the design and study of various mechanisms, the motion of which is described by similar differential equations. Such mechanisms include inertial conveyors, the gutter of which performs in addition to longitudinal and transverse oscillations. In addition, the proposed technique can be used in the study of the motion of bulk materials in an inclined cylinder, which performs torsional oscillations around the axis of symmetry.
对沿水平轴运动的物理钟摆运动的研究
本文研究了物理摆,考虑了运动副的摩擦力,其结果是振动被抑制。给出了不同速度v值时摆转角α和角速度随时间的关系图。已经确定,套筒的速度显著降低摆的振幅和角速度,其振荡频率不依赖于系统中干摩擦的存在。给出了摆摆振幅变化的依赖关系,并对摆摆运动微分方程进行了数值积分。在不同的摩擦系数值下,得到了摆转角和套筒x沿水平轴运动随时间的图形依赖关系。已经发现,在系统运动的前五秒钟,套筒的轴向速度实际上与摩擦系数无关(在f = 0.3…0.5时)。为了验证所得结果,设计并制造了一个实验实验室装置。理论研究结果与实验数据吻合良好,误差不超过16%。所得到的依赖关系可用于各种机构的设计和研究,这些机构的运动可以用类似的微分方程来描述。这种机构包括惯性传送带,其沟槽除纵向和横向振荡外还执行。此外,所提出的技术可用于研究大块材料在倾斜圆柱体中的运动,该圆柱体绕对称轴进行扭转振荡。
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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来源期刊
自引率
50.00%
发文量
32
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