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Modified Involute Helical Gears: Computerized Design, Simulation of Meshing, and Stress Analysis

机译:渐开线渐开线斜齿轮:计算机化设计,啮合模拟和应力分析

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摘要

The computerized design, methods for generation, simulation of meshing, and enhanced stress analysis of modified involute helical gears is presented. The approaches proposed for modification of conventional involute helical gears are based on conjugation of double-crowned pinion with a conventional helical involute gear. Double-crowning of the pinion means deviation of cross-profile from an involute one and deviation in longitudinal direction from a helicoid surface. Using the method developed, the pinion-gear tooth surfaces are in point-contact, the bearing contact is localized and oriented longitudinally, and edge contact is avoided. Also, the influence of errors of aligment on the shift of bearing contact, vibration, and noise are reduced substantially. The theory developed is illustrated with numerical examples that confirm the advantages of the gear drives of the modified geometry in comparison with conventional helical involute gears.
机译:介绍了改进的渐开线斜齿轮的计算机化设计,生成方法,啮合仿真和增强应力分析。提出的用于改进常规渐开线斜齿轮的方法是基于双冠小齿轮与常规渐开线斜齿轮的接合。小齿轮的双重拥挤意味着交叉轮廓偏离渐开线齿,而纵向偏离螺旋面。使用开发的方法,小齿轮齿面是点接触的,轴承接触是纵向定位的,并且避免了边缘接触。而且,可大大减少装配误差对轴承接触,振动和噪声的影响。通过数值示例说明了所开发的理论,这些示例证实了与传统的斜齿渐开线齿轮相比,改进的几何形状的齿轮驱动器的优势。

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