Experimental and Numerical Analysis of High-Speed Internally Cooled Milling

CONVERTER Pub Date : 2021-07-29 DOI:10.17762/converter.341
Ningxia Yin Et al.
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Abstract

Advanced cooling technology is a crucial measure of thermal dissipation for high-speed end-milling. In order to get an appropriate cooling technology and decrease the negative effects of traditional wet cutting, internally cooled cutting has been paid more and more attention. Because of interrupted cutting and uneven force, there was few application and investigation on internally cooled end-milling. In the paper, the effect of the end-milling tool with different internally cooled channel structure has been researched by experiment and theoretical analysis. The experimental results indicate that the end-milling tool with double helix channels carried out best machined surface quality. And the experiment result was also been analyzed and explained by computational fluid dynamics simulation, which provides a basis for the applying of the high-speed internally cooled end-milling tool.
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高速内冷铣削试验与数值分析
先进的冷却技术是高速立铣削散热的关键措施。为了获得合适的冷却技术,减少传统湿式切削的负面影响,内冷切削越来越受到重视。内冷立铣削由于存在切削中断和受力不均匀等问题,其应用和研究较少。本文通过实验和理论分析,研究了不同内冷通道结构的立铣刀的切削效果。实验结果表明,双螺旋通道立铣刀具有最佳的加工表面质量。并对实验结果进行了计算流体动力学仿真分析和解释,为高速内冷立铣刀的应用提供了依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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