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使用高速钢、高速钢-钴和高速钢-氮化钛刀具钻削粉煤灰地质聚合物时的刀具磨损与表面评估

Tool Wear and Surface Evaluation in Drilling Fly Ash Geopolymer Using HSS, HSS-Co, and HSS-TiN Cutting Tools.

作者信息

Ghazali Mohd Fathullah, Abdullah Mohd Mustafa Al Bakri, Abd Rahim Shayfull Zamree, Gondro Joanna, Pietrusiewicz Paweł, Garus Sebastian, Stachowiak Tomasz, Sandu Andrei Victor, Mohd Tahir Muhammad Faheem, Korkmaz Mehmet Erdi, Osman Mohamed Syazwan

机构信息

Faculty of Mechanical Engineering Technology, Universiti Malaysia Perlis, Perlis 01000, Malaysia.

Center of Excellence Geopolymer and Green Technology (CEGeoGTech), Universiti Malaysia Perlis, Perlis 01000, Malaysia.

出版信息

Materials (Basel). 2021 Mar 26;14(7):1628. doi: 10.3390/ma14071628.

Abstract

This paper reports on the potential use of geopolymer in the drilling process, with respect to tool wear and surface roughness. The objectives of this research are to analyze the tool life of three different economy-grade drill bit uncoated; high-speed steel (HSS), HSS coated with TiN (HSS-TiN), and HSS-cobalt (HSS-Co) in the drilling of geopolymer and to investigate the effect of spindle speed towards the tool life and surface roughness. It was found that, based on the range of parameters set in this experiment, the spindle speed is directly proportional to the tool wear and inversely proportional to surface roughness. It was also observed that HSS-Co produced the lowest value of surface roughness compared to HSS-TiN and uncoated HSS and therefore is the most favorable tool to be used for drilling the material. For HSS, HSS coated with TiN, and HSS-Co, only the drilling with the spindle speed of 100 rpm was able to drill 15 holes without surpassing the maximum tool wear of 0.10 mm. HSS-Co exhibits the greatest tool life by showing the lowest value of flank wear and produce a better surface finish to the sample by a low value of surface roughness value (Ra). This finding explains that geopolymer is possible to be drilled, and therefore, ranges of cutting tools and parameters suggested can be a guideline for researchers and manufacturers to drill geopolymer for further applications.

摘要

本文报道了地质聚合物在钻孔过程中关于刀具磨损和表面粗糙度方面的潜在用途。本研究的目的是分析三种不同经济型未涂层钻头;高速钢(HSS)、涂有TiN的高速钢(HSS-TiN)和高速钢-钴(HSS-Co)在钻地质聚合物时的刀具寿命,并研究主轴转速对刀具寿命和表面粗糙度的影响。结果发现,基于本实验设定的参数范围,主轴转速与刀具磨损成正比,与表面粗糙度成反比。还观察到,与HSS-TiN和未涂层HSS相比,HSS-Co产生的表面粗糙度值最低,因此是用于钻削该材料的最有利刀具。对于HSS、涂有TiN的HSS和HSS-Co,只有主轴转速为100 rpm的钻孔能够钻15个孔而不超过0.10 mm的最大刀具磨损。HSS-Co表现出最长的刀具寿命,其侧面磨损值最低,并通过低表面粗糙度值(Ra)为样品提供了更好的表面光洁度。这一发现表明地质聚合物是可以钻孔的,因此,建议的切削刀具和参数范围可为研究人员和制造商进一步应用钻削地质聚合物提供指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82ff/8037463/e1374c01f404/materials-14-01628-g001.jpg

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