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A Central Cooling Structure for Motorized Spindles: Principle and Application

机译:电动主轴中央冷却结构:原理与应用

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A central cooling structure for a grinding motorized spindle (150SD) is proposed under the inspiration of principle of miniature revolving heat pipes (MRVHPs). Firstly, a single MRVHP is experimentally investigated at different heat loads (2.5~30 W) and rotational speeds (1000~3000 rpm). An empirical correlation between the Nusselt number of MRVHP and rotational Reynolds number is obtained on the basis of the experimental data. And then, a transient thermal simulation of motorized spindle is conducted on ANSYS Workbench, based on the experimental data of MRVHP and the thermal boundary conditions of the motorized spindle. The results show that the introduction of the central cooling structure can reduce highest temperature of 150SD by 35%.
机译:在微型旋转热管(MRVHP)原理的启发下,提出了用于磨削电动主轴(150SD)的中央冷却结构。首先,在不同的热负荷(2.5〜30 W)和转速(1000〜3000 rpm)下,对单个MRVHP进行了实验研究。在实验数据的基础上,获得了MRVHP的Nusselt数与旋转雷诺数之间的经验相关性。然后,基于MRVHP的实验数据和电主轴的热边界条件,在ANSYS Workbench上进行了电主轴的瞬态热仿真。结果表明,引入中央冷却结构可使最高温度150SD降低35%。

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