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Experimental investigation of thermal performance of the oscillating heat pipe for the grinding wheel

机译:砂轮振荡热管热性能的实验研究

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A massive amount of heat is generated during the high-efficiency grinding process, which leads to a serious burnout problem that limits the increase of the material removal rate. The oscillating heat pipe (OHP) can augment the heat transfer in the grinding zone to avoid the burnout. An oscillating heat pipe grinding wheel that is a combination of a grinding wheel and OHPs was proposed in this paper. Aimed to determine geometric dimensions and operating parameters of the OHP, experimental investigations were carried out to study effects of working fluid, inner diameter, and heat flux on the heat transport capability of OHPs. The dynamics of flow change and coupled effects of geometric dimensions and thermophysical properties of working fluids were further analyzed by visualization. The OHP filled with acetone shows an advantage in heat transfer. Within the critical diameter range, a large inner diameter is better for the thermal performance. As heat flux increases, changes of flow pattern and motion modes from bubbly flow to annular flow and from oscillation to circulation enhance the thermal performance. The inner diameter of 3 mm and acetone as the working fluid are preferred for better cooling effects. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在高效研磨过程中会产生大量的热量,这会导致严重的燃尽问题,从而限制材料去除率的提高。振荡热管(OHP)可以增加研磨区的热传递,避免烧坏。本文提出了一种由砂轮和OHP组合而成的振动热管砂轮。为了确定OHP的几何尺寸和运行参数,进行了实验研究以研究工作流体,内径和热通量对OHP的热传递能力的影响。通过可视化进一步分析了流动变化的动力学以及几何尺寸和工作流体的热物理性质的耦合效应。装满丙酮的OHP在传热方面显示出优势。在临界直径范围内,较大的内径对于热性能更好。随着热通量的增加,从气泡流到环形流以及从振荡到循环的流动模式和运动模式的变化增强了热性能。为了获得更好的冷却效果,内径为3 mm的丙酮和丙酮作为工作流体是首选。 (C)2019 Elsevier Ltd.保留所有权利。

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