首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Investigation of the cooling effect of heat pipe-embedded cutter in dry machining with different thermal conductivities of cutter/workpiece materials and different cutting parameters
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Investigation of the cooling effect of heat pipe-embedded cutter in dry machining with different thermal conductivities of cutter/workpiece materials and different cutting parameters

机译:不同导热系数和切削参数的干式加工中热管嵌入式刀具冷却效果的研究

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摘要

Traditional cooling methods used to irrigate coolants are not environment friendly and economical. An innovative idea, which is environment friendly, is to integrate a transcalent device without outer driving-heat pipe, into the structure of cutter. Cutting parameters directly affect removing material efficiency and shape of the cutting chip, which affects flow of cutting heat. Thermal conductivities of cutting tool and workpiece affect heat transmission and distribution across the machining system. In this paper, cutting experiments and finite element simulations were carried out to explore the impact of workpiece and cutter materials and three cutting parameters on the cooling effect of heat pipe-embedded cutter. Cooling effect of the heat pipe embedded into cutter was significantly higher than the ordinary cutter. About 40 % of the heat flowing into the cutter was transferred by the heat pipe; temperature at the measurement point of rake face decreases by about 50 C-a similar to; highest temperature of cutter decreased by about 200 C-a similar to. Cooling effect of the embedded heat pipe was affected by the materials of workpiece and cutter, and cutting parameters as well. The heat pipe transfers heat more efficiently when there is a large heat flux causing a more efficient decrease in the temperature of tool bit when difficult-to-cut metal was machined. Compared to other cutting parameters, cutting speed has a dominant effect on the cooling of the heat pipe.
机译:用于灌溉冷却剂的传统冷却方法既不环保也不经济。一种环境友好的创新想法是将无外部驱动热管的透明装置集成到切割器的结构中。切削参数直接影响去除材料的效率和切削屑的形状,从而影响切削热的流动。切削刀具和工件的热导率会影响整个加工系统的热传递和分布。本文进行了切削实验和有限元模拟,以探讨工件和刀具材料以及三个切削参数对热管嵌入式刀具冷却效果的影响。嵌入切刀的热管的冷却效果明显高于普通切刀。流入切刀的热量约有40%是通过热管传递的。前刀面测量点的温度降低约50 C-a,与之相似;刀具的最高温度降低了约200 C-a。嵌入式热管的冷却效果受工件和刀具材料以及切削参数的影响。当热通量大时,热管更有效地传递热量,从而在加工难切削的金属时更有效地降低刀头的温度。与其他切割参数相比,切割速度对热管的冷却起主要作用。

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