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New version of Novikov―Wildhaber helical gears: computerized design, simulation of meshing and stress analysis

机译:Novikov的新版本―Wildhaber斜齿轮:计算机化设计,啮合模拟和应力分析

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A new version of Novikov-Wildhaber gear drive is considered. The contents of the paper cover design, generation, tooth contact analysis (TCA), and stress analysis of a new type of Novikov-Wildhaber helical gear drive. The great advantages of the developed gear drive in comparison with the previous ones are (ⅰ) reduction of noise and vibration caused by errors of alignment, (ⅱ) the possibility of grinding and application of hardened materials, and (ⅲ) reduction of stresses. These achievements are obtained by application of (ⅰ) new geometry (based on application of parabolic rack-cutters), (ⅱ) double-crowning of pinion, and (ⅲ) parabolic type of transmission errors. The manufacture of gears is based on application of grinding or cutting disks, and grinding or cutting worms. The advantages of the developed gear drive have been confirmed by simulation of meshing and contact, stress analysis, and investigation of formation of bearing contact. Computer programs that cover computerized design, TCA, and automatic development of finite element models of new version of Novikov-Wildhaber gear drives have been developed. A general purpose finite element analysis computer program has been used for stress analysis and investigation of formation of bearing contact. Helical gears of new geometry can be applied in high-speed transmissions. The developed theory is illustrated with numerical examples.
机译:考虑使用新版本的Novikov-Wildhaber齿轮传动。新型Novikov-Wildhaber斜齿轮传动的纸封面设计,生成,齿接触分析(TCA)和应力分析的内容。与以前的齿轮传动装置相比,已开发的齿轮传动装置的主要优点是(ⅰ)减少了因对准误差而引起的噪音和振动;(ⅱ)研磨和施加硬化材料的可能性;以及(ⅲ)减小了应力。这些成就是通过应用(ⅰ)新几何形状(基于抛物线齿条切割机的应用),(ⅱ)小齿轮的双重拥挤以及(ⅲ)抛物线型传输误差而获得的。齿轮的制造基于磨盘或切割盘以及蜗杆或磨削蜗杆的应用。通过啮合和接触的仿真,应力分析以及轴承接触形成的研究,已经证实了开发的齿轮传动装置的优点。已经开发了涵盖计算机化设计,TCA和新版Novikov-Wildhaber齿轮传动的有限元模型自动开发的计算机程序。通用有限元分析计算机程序已用于应力分析和轴承接触形成的研究。新几何形状的斜齿轮可应用于高速变速器。所开发的理论通过数值示例进行说明。

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