Study on the chip shape for micromilling of Polyether-Ether-Ketone

Hao Xu, Xiang Cheng, Guangming Zheng, Mingze Tang, Huanbao Liu
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Abstract

Microscale parts made of Polyether-Ether-Ketone (PEEK) are widely used in biomedical, aerospace, and manufacturing industries. The formation mechanism of the chip and machining quality of PEEK are closely related during the micromilling process. However, they have not been sufficiently studied yet. Therefore, the chip shape during the micromilling process is investigated in this research to gain an in-depth understanding of the micromilling process of PEEK. Firstly, a finite-element simulation model is constructed and used to investigate the relationships of feed speed in relation to strain rate and chip shape. Secondly, the chip shape is classified from the experimental results and process intervals are explored corresponding to each kind of chip shape. Then, the relationships between the chip shape and evaluation indexes (milling force F, maximum cutting temperature T max , surface roughness R a ) are investigated. It turns out that four main types of chip shapes are produced during the micromilling process of PEEK, namely, the flake chip, the ribbon chip, the curl chip, and the broken chip. Different kinds of chip shapes can be obtained by controlling the process parameters during the micromilling process. The stability of the cutting process can be judged and the machining quality can be initially discerned based on the chip shapes.
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聚醚醚酮微铣削切屑形状的研究
由聚醚醚酮(PEEK)制成的微型部件广泛应用于生物医学、航空航天和制造业。微铣削过程中切屑的形成机理与PEEK的加工质量密切相关。然而,它们还没有得到充分的研究。因此,本研究对微铣削过程中的切屑形状进行了研究,以深入了解PEEK的微铣削过程。首先,建立了有限元仿真模型,研究了进给速度与应变速率和切屑形状的关系。其次,根据实验结果对切屑形状进行了分类,并针对每种切屑形状探索了相应的加工间隔;然后,研究了切屑形状与评价指标(铣削力F、最高切削温度tmax、表面粗糙度R a)之间的关系。结果表明,PEEK在微铣削过程中主要产生四种切屑形状,即片状切屑、带状切屑、卷曲切屑和破碎切屑。在微铣削过程中,通过控制工艺参数可以得到不同形状的切屑。根据切屑形状可以判断切削过程的稳定性,初步判断加工质量。
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来源期刊
CiteScore
5.10
自引率
30.80%
发文量
167
审稿时长
5.1 months
期刊介绍: Manufacturing industries throughout the world are changing very rapidly. New concepts and methods are being developed and exploited to enable efficient and effective manufacturing. Existing manufacturing processes are being improved to meet the requirements of lean and agile manufacturing. The aim of the Journal of Engineering Manufacture is to provide a focus for these developments in engineering manufacture by publishing original papers and review papers covering technological and scientific research, developments and management implementation in manufacturing. This journal is also peer reviewed. Contributions are welcomed in the broad areas of manufacturing processes, manufacturing technology and factory automation, digital manufacturing, design and manufacturing systems including management relevant to engineering manufacture. Of particular interest at the present time would be papers concerned with digital manufacturing, metrology enabled manufacturing, smart factory, additive manufacturing and composites as well as specialist manufacturing fields like nanotechnology, sustainable & clean manufacturing and bio-manufacturing. Articles may be Research Papers, Reviews, Technical Notes, or Short Communications.
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