GEOMETRIC ANALYSIS AND THEORETICAL EFFICIENCY EVALUATION OF THE CONE-AND-PLATE ENGAGEMENT OF A SPHERICAL ROLLING SCREW MOTION DRIVE

M. Lustenkov, A. Moiseenko
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Abstract

The study objective was to assess the influence of friction factors and geometric parameters of a spherical rolling screw motion drive on its efficiency. The load is transferred by means of a cone-and-plate engagement of two rows of rollers mounted on a satellite with fixed and driven plate central gears. With the help of a spherical rolling screw motion drive, it is possible to realize a wide range of gear ratios (16...200) and reduce the material capacity of the gearbox, ensuring the ratio of its mass to the nominal transmitted torque of less than 0.1 kg/(N•m). The main task of this research is to find out the ascent angle of the spatial closed center curves with the help of which the surfaces of the central wheel teeth are formed. The research methods are based on the application of the classical mechanics laws and computer modeling algorithms in NX system. The novelty of the research is in the novelty of the technical object under study, its low level of being studied, the lack of detailed methods of its calculation and design. As a result, based on the analysis of the geometric satellite model, the equations of the center curves are obtained and an algorithm for determining the ascent angle of the center curve in the middle section of the central wheel teeth is developed, which allows power analysis of the motion drive. The applicability of the formula for calculating the average ascent angle of a piecewise helical curve located on a cylindrical surface for spherical motion drives is evaluated and the necessity of its adjustment taking into account a given gear ratio and the inclination angle of the drive shaft crank is found out. An algorithm is developed for the theoretical study of the efficiency of spherical roller gears at the design stage.
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球面滚动螺杆运动传动锥盘啮合的几何分析及理论效率评价
研究了球面滚动螺杆运动传动的摩擦因数和几何参数对传动效率的影响。载荷通过安装在卫星上的两排滚轮的锥形和板式啮合来传递,这些滚轮具有固定和驱动的板式中心齿轮。借助球形滚动螺杆运动驱动器,可以实现大范围的传动比(16…200),并减少齿轮箱的材料容量,确保其质量与标称传递扭矩的比值小于0.1 kg/(N•m)。本研究的主要任务是找出空间封闭中心曲线的上升角,并利用该曲线形成中心轮齿的表面。研究方法是基于经典力学定律和计算机建模算法在NX系统中的应用。研究的新颖性在于所研究技术对象的新颖性、被研究程度低、缺乏详细的计算和设计方法。在对卫星几何模型进行分析的基础上,得到了中心曲线方程,并提出了确定中心齿中部中心曲线上升角的算法,实现了对运动传动的功率分析。评价了球面运动传动中圆柱面分段螺旋曲线平均上升角计算公式的适用性,指出了在给定传动轴曲柄倾角和传动轴传动比的情况下对其进行调整的必要性。提出了一种在设计阶段对球滚子齿轮效率进行理论研究的算法。
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