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超声辅助条件下渐消逆刃铣刀逆螺旋铣削的仿真与实验研究

Simulation and Experimental Study on Reverse Helical Milling with the Gradual-Removal Reverse Edge Milling Cutter under Ultrasonic-Assisted Condition.

作者信息

Ren Kemeng, Wang Guangyue

机构信息

Key Laboratory of Advanced Manufacturing and Intelligent Technology, Ministry of Education, Harbin University of Science and Technology, Harbin 150080, China.

出版信息

Materials (Basel). 2022 Jan 31;15(3):1117. doi: 10.3390/ma15031117.

Abstract

As a new machining method, ultrasonic-assisted bi-direction helical milling has obvious advantages in making holes on carbon fiber-reinforced plastics (CFRP). However, cutting edges of the flat-bottomed milling cutter are easy to wear, which may cause severe defects such as burrs and tears in the outlet of the hole. In order to improve the hole-making quality of CFRP, the gradual-removal reverse edge milling cutter was proposed and designed. The finite method models of reverse helical milling CFRP with the flat-bottomed reverse edge milling cutter and the gradual-removal reverse edge milling cutter under an ultrasonic vibration were established, and the comparative cutting experiments of the two cutters were carried out. By comparing the cutting performance of the two milling cutters under the condition of ultrasonic vibration assistance, the cutting mechanism of improving the hole wall quality by the gradual-removal reverse edge milling cutter was studied. The results showed that when the reverse cumulative cutting depth reached about 60 mm, compared with the flat-bottomed reverse edge milling cutter, the gradual-removal reverse edge milling cutter transferred part of the cutting task of the peripheral edge to the end edge, and the wear of the reverse peripheral edges which directly affects the hole quality was effectively alleviated. This mechanism made the cutting state of the peripheral edge dominated by shear failure, which led to the significant improvement of the quality at the outlet of the hole.

摘要

作为一种新型加工方法,超声辅助双向螺旋铣削在碳纤维增强塑料(CFRP)制孔方面具有明显优势。然而,平底铣刀的切削刃容易磨损,这可能会在孔的出口处产生诸如毛刺和撕裂等严重缺陷。为了提高CFRP的制孔质量,提出并设计了渐进去除反刃铣刀。建立了超声振动作用下平底反刃铣刀和渐进去除反刃铣刀反向螺旋铣削CFRP的有限元模型,并对两种铣刀进行了对比切削试验。通过比较两种铣刀在超声振动辅助条件下的切削性能,研究了渐进去除反刃铣刀提高孔壁质量的切削机理。结果表明,当反向累积切削深度达到约60mm时,与平底反刃铣刀相比,渐进去除反刃铣刀将部分周边刃的切削任务转移到了端刃,有效减轻了直接影响孔质量的反向周边刃的磨损。该机理使周边刃的切削状态以剪切破坏为主,从而使孔出口处的质量得到显著提高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9062/8839517/3f558c8df734/materials-15-01117-g001.jpg

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