Effect of Cutter Diameters on Surface Roughness Attained in High Speed End Milling of Soda Lime Glass

摘要:

文章预览

Soda lime glass is used extensively in camera lens, micro gas turbines, light bulbs, tablewares, optics, and chemical apparatus owing to its high hardness, excellent optical properties, and good corrosion and chemical resistance. Such applications of soda lime glass demand high machining and finishing precision. On the other hand, machining of glass poses significant challenges due to its inherent brittleness. The process of removal of material from glass, if not done in ductile mode, can generate subsurface cracks and brittle fractures which have adverse effects on its functionality. This research investigates the high speed micro-end milling of soda lime glass in order to obtain ductile regime machining. It has been found by other researchers that ductile mode machining can avoid sub-surface cracks and brittle fractures. However, in ductile mode machining, the gummy chips settle permanently on the machined surface affecting adversely the surface finish. In order to avoid such chip settlement, compressed air was directed using a special air delivery nozzle to blow away the resultant gummy chips, thereby preventing them from settling on the machined surface. Response surface methodology (RSM) and a commercial NC end mill were used to design and perform the machining runs, respectively. Machining was done using: high spindle speeds from 30,000 to 50,000 rpm, feed rates from 5 to 15 mm/min, and depth of cuts from 3 to 7 μm. Three different diameter carbide tools were used: 0.5, 1, and 2 mm. A surface profilometer was used to analyze the surface roughness of the resultant machined surface. Subsequently, the data was used for finding the best combination of cutting parameters required to obtain the lowest surface roughness. The results demonstrate that high speed machining is a viable option for obtaining ductile regime machining and generating machined surfaces with very low surface roughness in the range of 0.08μm – 0.22 μm, using 0.5 mm carbide end mill cutter.

信息:

期刊:

编辑:

Iskandar I. Yaacob, Mohammad Yeakub Ali, Iis Sopyan and Saleem Hashmi

页数:

51-54

DOI:

10.4028/www.scientific.net/AMR.1115.51

引用:

A.K.M. N. Amin et al., "Effect of Cutter Diameters on Surface Roughness Attained in High Speed End Milling of Soda Lime Glass", Advanced Materials Research, Vol. 1115, pp. 51-54, 2015

上线时间:

July 2015

输出:

价格:

$35.00

* - 通讯作者

[1] M. Arif, M. Rahman and W.Y. San: Ultraprecision ductile mode machining of glass by micromilling process, Journal of Manufacturing Processes, Vol. 13(1) (2011), pp.50-59.

DOI: 10.1016/j.jmapro.2010.10.004

[2] E. Al-Regib, E. Ni and S.H. Lee: Chatter control by spindle speed variation in high-speed milling, International Journal of Machine Tools and Manufacture, Vol. 43(12) (2003), pp.1229-1240.

DOI: 10.1016/s0890-6955(03)00126-3

[3] H. Schulz and T. Moriwaki: High-speed machining, CIRP Annals-Manufacturing Technology, Vol. 41(2) (1992), pp.637-643.

DOI: 10.1016/s0007-8506(07)63250-8

[4] A.K.M.N. Amin, M.M.A. Nassar and M.D. Arif: Optimization of surface roughness in micro-high speed end milling of soda lime glass using uncoated tungsten carbide tool with compressed air blowing, Advanced Materials Research, In Press.

DOI: 10.4028/www.scientific.net/amm.607.103

[5] A.K.M.N. Amin, M.D.M. Ismail, High Speed End Milling of Single Crystal Silicon Wafer, LAP Lambert Academic Publishing, 66111 Saarbrücken, Germany, ISBN 978-3-8443-8111-5/2011/USA, UK, 80p.

为了查看相关信息, 需 Login.