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An optimum preload method for machine tool spindle ball bearings

机译:机床主轴球轴承的最佳预紧方法

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摘要

To provide a suitable rotation rate for different machining processes, a single machine tool spindle should work over a wide range of speeds. This study considered the effects of speed on dynamic behaviour of ball bearings and combined the fatigue life model and ball bearing internal load distribution model to determine the appropriate preload. First, the influence of speed on internal load distribution and ball bearing contact angles was analysed. The preload was calculated using a ball bearing internal load distribution model. Next, assuming constant bearing fatigue life, the theoretical preload curves were determined using the fatigue life model by changing the reliability factor. Finally, at low speeds, the maximum designed preload (design value) was set as the initial preload. With the increase in speed, the optimum preload was hierarchically obtained within the internal region between the theoretical preload curves. An experimental test rig for the optimum preload of ball bearings, which can automatically adjust the preload, was developed. The proposed method for determining the optimum preload was verified using the measured performance indicators, including the temperature, motor currents, and vibration of ball bearings. The results showed that the optimum preload suggestion made the test ball bearings exhibit excellent behaviour.
机译:为了为不同的加工过程提供合适的转速,单个机床主轴应在很宽的速度范围内工作。这项研究考虑了速度对球轴承动态行为的影响,并结合了疲劳寿命模型和球轴承内部载荷分布模型来确定适当的预载荷。首先,分析了速度对内部载荷分布和滚珠轴承接触角的影响。使用球轴承内部载荷分布模型计算预载荷。接下来,假设轴承疲劳寿命恒定,则通过改变可靠性系数,使用疲劳寿命模型确定理论预载曲线。最后,在低速下,将最大设计预载(设计值)设置为初始预载。随着速度的增加,在理论预载曲线之间的内部区域内分层获得了最佳预载。开发了用于自动调节预紧力的最佳球轴承预紧力的实验测试台。使用测得的性能指标(包括温度,电机电流和球轴承的振动)验证了建议的确定最佳预紧力的方法。结果表明,最佳的预紧力建议使测试球轴承表现出出色的性能。

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