Substantiation of Geometric Parameters of a Variable Inertia Moment Pulley

O. S. Kuropiatnyk, M. Y. Sharapov
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Abstract

Purpose. The main purpose of our work is to substantiate the geometric parameters of a variable moment of inertia pulley, which can reduce the weight of a drive with such a pulley. Methodology. It was found that the masses of the pulley and support elements have the greatest influence on the weight of the drive, so we focused on the pulley. Improvement of the pulley design and determination of its rational geometric parameters were carried out in three stages. At the first stage, the size of the rim was reduced in accordance with the diameter of the rope. At the second stage, a multivariate calculation was performed for a pulley with spokes that expand toward the rim. Holes were made in the spokes to reduce the pulley weight. The fundamental difference of the pulley calculated at the third stage is the absence of holes in the spokes, which makes it possible to increase the rigidity of the structure. The control parameter was the angle of expansion of the spokes. The problem of establishing a rational value for this angle was solved using the SolidWorks computer program with the Simulation application, subject to the constraints on the safety factor (at least two) and the structural rigidity parameters (displacement along three coordinate axes and the resulting displacement at the level of the values for the base structure). Findings. It has been established that the weight optimization of a drive with a variable moment of inertia pulley is advisable to be carried out by reducing the masses of the pulley and supporting elements. The best design is that of a variable moment of inertia pulley that contains spokes (without holes) that expand toward the rim; the rational angle of expansion of the spokes is 25°. If a pulley with reasonable geometric parameters is used, the mass of the drive will decrease by 16% in the case of a 33 % reduction in the mass of the pulley itself compared to the mass of the basic design. Originality. A new design is proposed and rational parameters of the variable moment of inertia pulley are substantiated, which make it possible to reduce the mass of the drive with such a pulley. Practical value. The use of the pulley of this design will reduce the load on the electric motor during startup, as well as the load on the supporting structures.
变惯性矩滑轮几何参数的论证
目的。我们工作的主要目的是证实可变惯性矩皮带轮的几何参数,从而减轻使用这种皮带轮的传动装置的重量。方法。我们发现滑轮和支撑元件的质量对驱动器重量的影响最大,因此我们将重点放在滑轮上。滑轮设计的改进和合理几何参数的确定分三个阶段进行。第一阶段,根据绳索直径减小轮缘尺寸。在第二阶段,对辐条向轮缘扩展的滑轮进行了多元计算。在辐条上打孔以减轻滑轮重量。第三阶段计算出的滑轮的根本区别在于辐条上没有孔,这就有可能增加结构的刚性。控制参数是辐条的膨胀角。在安全系数(至少两个)和结构刚度参数(沿三个坐标轴的位移以及由此产生的与基础结构值相同的位移)的限制下,使用 SolidWorks 计算机程序和模拟应用程序解决了为该角度确定合理值的问题。研究结果研究结果表明,变惯性矩滑轮驱动装置的重量优化应通过减小滑轮和支撑元件的质量来实现。最好的设计是包含向轮缘膨胀的辐条(无孔)的变惯性滑轮;辐条的合理膨胀角为 25°。如果使用几何参数合理的带轮,在带轮本身质量比基本设计质量减少 33% 的情况下,传动装置的质量将减少 16%。原创性。提出了一种新的设计方案,并证实了可变惯性矩皮带轮的合理参数,这使得使用这种皮带轮降低传动装置的质量成为可能。实用价值。使用这种设计的皮带轮可以减轻电机在启动时的负荷以及支撑结构的负荷。
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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