Investigate the Fluctuation Size in Thrust Force and Chip Morphology in Drilling
Öz
Drilling is a widely used production method, having a broad range of applications
taking part in machining operations. The length of the cutting edge of the
drill causes variations in cutting speed, resulting in undesired outputs. In
order to decrease this adverse impact in drilling, selecting higher point
angles is an obligation, associated with three different kinds of feed rates
and spindle speeds. The aim of this study is to investigate the effect of feed
rate, spindle speed, and point angle on the fluctuation size in thrust force
besides the effect of the fluctuation size in thrust force on the surface
roughness, tool wear and chip morphology. In conclusion, while higher point
angles provided optimum outputs such as lower fluctuation size in thrust force,
less tool wear, better surface quality and continuous chip form, the effect of
feed rate and spindle speed on these outputs varied depending on each other.
With the stability in fluctuation size in thrust force, less tool wear took
place, and better surface quality and continuous chip form were achieved. However,
due to the effect of vibrations, higher fluctuation size in thrust force caused
undesired outputs, such as poor surface quality, more tool wear, removal chip
in short and brittle form during the drilling operations.
Anahtar Kelimeler
Kaynakça
- 1. Thakre, A.A, Soni, S, Modelling of burr size in drilling of aluminium silicon carbide composites using response surface methodology, Engineering Science and Technology an International Journal, 2016, 19, 1199-1205.
- 2. Chen, W.C, Tsao, C.C, Cutting performance of different coated twist drills, Journal of Materials Processing Technology, 1999, 88, 203 – 207.
- 3. Lazar, M. B, Xiraouchhakis, P, Mechanical load distribution along the main cutting edges in drilling, Journal of Materials Processing Technology, 2013, 213, 245 – 260.
- 4. Kalidas, S. R, Devor, E, Kapoor, S. G, Experimental investigation of the effect of drilling coatings on hole quality under dry and wet drilling conditions, Surface and Coatings Technology, 2001, 148, 117 – 128.
- 5. Puneeth, H. V, Smitha, B.S, Studies on tool life and cutting forces for drilling operation using uncoated and coated HSS tool, International Research Journal of Engineering and Technology, 2017, 4, 1949-1954.
- 6. Ema, S, Effect of twist drill point geometry on torque and thrust, Science Report of Faculty of Education Gifu University (Natural Science), 2012, 36, 165-174.
- 7. Çaydas, U, Çelik, M, Investigation of the effects of cutting parameters on the surface roughness, tool temperature and thrust force in drilling of AA 7075-T651 alloy, Journal of Polytechnic, 2017, 20(2), 419–425. 8. Parsian, A, Magnevall, M, Eynian, M, Beno, T, Time domain simulation of chatter vibration in indexable drills, International Journal of Advanced Manufacturing Technology, 2017, 89, 1209-1221.
- 9. Wosniak, F. A, Polli, M. L, Beltrao, P. A. C, Study on tool wear and chip shapes in deep drilling of AISI 4150 steel, Journal of the Brazilian Society of Mechanical Sciences and Technology, 2016, 89, 3535-3545.
Ayrıntılar
Birincil Dil
İngilizce
Konular
Mühendislik
Bölüm
Araştırma Makalesi
Yazarlar
Zülküf Demir
*
0000-0002-0685-3712
Türkiye
Yayımlanma Tarihi
28 Aralık 2018
Gönderilme Tarihi
25 Mart 2018
Kabul Tarihi
17 Aralık 2018
Yayımlandığı Sayı
Yıl 2018 Cilt: 14 Sayı: 4
Cited By
Experimental Investigation of Flow Drilling and Flow Tapping of Thin-Walled Square and Circular Hollow Sections
International Journal of Automotive Science And Technology
https://doi.org/10.30939/ijastech..1453441