Effects of Shaft-Bore Water Flow Cooling of High-Speed Spindle Supported With Water-Lubricated Hydrostatic Bearings on Thermal Stability

Y. Nakao, T. Yaguchi, Dmytro Fedorynenko, Junpei Kusuyama
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Abstract

In this paper, the thermal stability of a spindle with water-lubricated hydrostatic bearings was investigated. In order to improve the thermal stability of the spindle, a center bore water cooling structure was designed in the rotor. Influences of the center bore water cooling on not only thermal stability but also temperature control performance of the spindle was studied via simulations and experiments. Power losses due to water flows in the spindle were considered. Based on a derived lumped parameter model, the temperature changes of the water flow and spindle were predicted. As used in many machine tool components, it was verified that the center bore cooling are effective to improve the thermal stability of the spindle. An influence of structural change of the rotor due to the center bore on the heat capacity and time constant was investigated. As a result, the time constant in terms of the thermal characteristics is decreased due to the center bore structure. Because of this feature, the temperature control performance can be improved.
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水润滑静压轴承支撑高速主轴轴膛水流冷却对热稳定性的影响
本文研究了水润滑静压轴承主轴的热稳定性。为了提高主轴的热稳定性,在转子内设计了中心孔水冷却结构。通过仿真和实验研究了中心孔水冷却对主轴热稳定性和温控性能的影响。考虑了主轴内水流造成的功率损失。基于建立的集总参数模型,对水流和主轴的温度变化进行了预测。实践证明,中心孔冷却对提高主轴的热稳定性是有效的。研究了中心孔引起的转子结构变化对热容量和时间常数的影响。因此,由于中心孔结构的存在,热特性方面的时间常数减小了。由于这一特点,可以提高温度控制性能。
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