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Experimental investigation of single loop thermosyphons utilized in motorized spindle shaft cooling

机译:电动主轴轴冷却中使用的单环热悬浮液的实验研究

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In this paper, a shaft cooling structure of a grinding motorized spindle was designed based on loop thermosyphons. The evaporation and condensation sections of the loop thermosyphons were located on the same tube due to the thermal conductivity of the shaft. The experimental studies on both heat transfer performance and start-up characteristics of a single loop thermosyphon were performed under the special condition. Then, the cooling effect on the shaft was simulated depending on the obtained experimental data. Results demonstrated that the optimal liquid filling rate of a loop thermosyphon ranged between 50 and 60% under the special condition. Furthermore, a critical value of heating power between 20 W and 40 W was found. When the heating power exceeded this value, the temperature of the evaporation section increased rapidly without any fluctuation. The violent fluctuation of temperature at the upper evaporation section could be utilized as an indicator for the heat transfer limit. Finally, according to the simulation, the maximum temperature of the motorized spindle was reduced by approximately 28% under the effect of the designed cooling structure. (c) 2018 Elsevier Ltd. All rights reserved.
机译:在本文中,基于环热悬浮液设计了研磨机动主轴的轴冷却结构。由于轴的导热率,环热磷的蒸发和冷凝部分位于同一管上。在特殊条件下进行了对单环热循环磷热传递性能和初始特性的实验研究。然后,根据所获得的实验数据模拟轴上的冷却效果。结果表明,在特殊条件下,环热磷酸磷的最佳液体灌装速率范围为50%至60%。此外,发现了20W和40W之间的加热功率的临界值。当加热功率超过该值时,蒸发部分的温度迅速增加而不会波动。上蒸发部分温度的剧烈波动可用作传热极限的指示。最后,根据模拟,在设计的冷却结构的效果下,电动主轴的最大温度降低了大约28%。 (c)2018年elestvier有限公司保留所有权利。

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