An Analytical Investigation of Rattle Characteristics of Powder Metal Gears

Elizabeth Slavkovsky, M. Inalpolat, A. Flodin
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Abstract

This study employs an analytical model of a gear pair with transverse-torsional dynamics that allows analysis of single-sided, double-sided, and random rattle situations to contrast rattle characteristics of isotropic PM gears with a baseline steel gearset. This model utilizes time-varying gear mesh stiffness and transmission error as the internal excitation sources and time-varying operating torque as an external excitation. The gear rattle performance of PM gears is investigated under different torque conditions and operating speeds. The system kinetic and potential energy is assessed as an evaluation tool that can indicate the severity of different rattle conditions. The dynamic response of two different versions of an existing PM gear design are compared with a baseline traditional steel gear.
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粉末金属齿轮颤振特性分析研究
本研究采用具有横向扭转动力学的齿轮副的分析模型,允许分析单面,双面和随机摇振情况,以对比各向同性PM齿轮与基线钢齿轮组的摇振特性。该模型采用时变齿轮啮合刚度和传动误差作为内部激励源,时变工作转矩作为外部激励源。研究了永磁齿轮在不同转矩和转速条件下的摇振性能。系统动能和势能作为一种评价工具,可以反映不同响铃状态的严重程度。对现有永磁齿轮设计的两种不同版本的动态响应与基线传统钢齿轮进行了比较。
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