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EXACT SOLUTION OF HIGH-SPEED COUPLINGS FOR INTERFERENCE FITS

机译:用于干涉配合的高速联轴器的精确解决方案

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摘要

High-speed couplings are the key parts of micro-turbomachinerys. They are assembled to shafts by interference fits, which can transfer large torque, are easy to produce and offer significant cost advantages. Considering of the influences of the torque, rotational speed and temperature variation, the interference fits between couplings and shafts have to be analyzed accurately in order to save the construction cost and reducing risk of invalidation accidents. In this paper, a model of the interference fit between a coupling and a shaft is developed to study the determine parameters of the interference value. Using the classic elastic plane stress theory, the exact solutions of the radial stresses, hoop stresses and radial displacements are obtained. Three determine parameters (the torque, angular velocity and temperature variation correction terms) are derived in order to calculate the interference value. Taking a high-speed microturbomachinery for example, the numerical results show that the interference value is dependent of the ratios of inner radius to outer radius of the coupling and shaft significantly. The torque, angular velocity and temperature variation correction terms are in the same order of magnitude. The present analytical solutions are expected to be useful in the structure design of the interference fit between a high-speed coupling and a shaft.
机译:高速联轴器是微型涡轮机械的关键部分。它们通过干涉配合组装到轴,可以传递大扭矩,易于生产并提供显着的成本优势。考虑到扭矩,转速和温度变化的影响,必须准确地分析联轴器和轴之间的干涉配合,以节省施工成本并降低无效事故的风险。在本文中,开发了耦合和轴之间的盈化配合的模型,以研究干扰值的确定参数。使用经典弹性平面应力理论,获得径向应力,箍应力和径向位移的精确解。推导出三个确定参数(扭矩,角速度和温度变化术语)以计算干扰值。例如,采用高速微管状机械,数值结果表明,干扰值取决于内半径的比率和轴的外半径的比例显着。扭矩,角速度和温度变化校正项呈相同的数量级。预计本分析解决方案将在高速耦合和轴之间的干涉配合的结构设计中有用。

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