Determination of the fine-module teeth cutting section in the eccentric free running mechanisms

O. Sharkov, A. Kalinin
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Abstract

Normal forces use to transfer the load makes it possible to increase load capacity and reliability of the free running mechanisms. Normal forces in the eccentric free running mechanisms are realized in engagement of the fine-module teeth that are cut on the outer cage inner surface and the outer surface of the eccentric rings. To ensure correct operation of the mechanism in jamming and wedging, value of the fine-module teeth cutting section angle should be selected from the equality condition of the radial clearance between the outer cage teeth and the eccentric ring in the entire working section. To solve the problem, calculation scheme is proposed and mathematical model is obtained that describes relationship between the fine-module cutting section angle and the mechanism geometric parameters. The nature of the main geometric parameters influence (radius, eccentricity, radial clearance, module, etc.) on the value of the teeth cutting section angle was established. It is shown that eccentricity provides the greatest influence on the working area size, radial clearance and module influences are less pronounced.
偏心自由运转机构小模数齿切削截面的测定
使用法向力来传递负载,可以增加自由运行机构的负载能力和可靠性。偏心自由运行机构中的法向力是通过切割在外笼内表面和偏心环外表面上的细模齿的啮合来实现的。为保证机构在卡楔时的正确运行,应从整个工作截面内外保持架齿与偏心环径向间隙相等的条件中选择细模齿切割截面角的值。针对这一问题,提出了计算方案,建立了描述小模切截面角与机构几何参数关系的数学模型。建立了主要几何参数(半径、偏心、径向间隙、模数等)对齿切截面角值的影响性质。结果表明,偏心距对工作面积的影响最大,径向间隙和模量的影响较小。
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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