Study on Machining Parameters for Thrust Force and Torque in Milling AA7039 Composites Reinforced with Al2O3/B4C/SiC Particles

Cilt: 2 Sayı: 2 22 Haziran 2016
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Study on Machining Parameters for Thrust Force and Torque in Milling AA7039 Composites Reinforced with Al2O3/B4C/SiC Particles

Öz

Metal matrix composites are used in many industrial fields such as automobile, military and aerospace applications due to their superior mechanical properties. In the present study, three aluminum 7039 metal matrix composite (MMCs) samples reinforced with 10 wt.% particulates of aluminum oxide (Al2O3), 10 wt.% boron carbide (B4C), and 10 wt.% silicon carbide (SiC) were successfully fabricated using a powder metallurgy and hot extrusion method. The influences of cutting parameters on the thrust cutting force and torque during milling of the three MMCs were investigated under dry machining conditions. The milling tests were performed based on the Taguchi orthogonal -array design of experiments, for different machining parameters such as cutting speed, feed and depth of cut. The effect of reinforcement contents on cutting force and torque were specified by utilizing analysis of variance (ANOVA). Mathematical models have been generated for the thrust force and torque through regression method. The results indicated that the minimal thrust force and torque were obtained in the machining of the Al2O3 reinforced specimen. The cutting force was directly influenced by the cutting feed and the axial cutting depth was the most effective machining parameter affecting milling torque in the machining of three composite specimens. The experimental results were modeled using regression analysis and artificial neural networks (ANN) to predict the thrust force and torque. The thrust force and torque were predicted with a mean squared error equal to 5.85% and 5.12% respectively using ANN models.

Anahtar Kelimeler

Kaynakça

  1. Ş. Karabulut, U. Gökmen and H. Çinici, “Study on the mechanical and drilling properties of AA7039 composites reinforced with Al2O3/B4C/SiC particles”, Compos. Part. B, vol. 93, pp. 43-55, May 2016.
  2. K. Umanath, K. Palanikumar and ST. Selvamani, “Composites: Part B Analysis of dry sliding wear behaviour of Al6061/SiC/Al2O3 hybrid metal matrix composites”, Compos Part B, vol. 53, pp. 159–68, October 2013.
  3. Ş. Karabulut, “Optimization of surface roughness and cutting force during AA7039/ Al2O3 metal matrix composites milling using neural networks and Taguchi method” Measurement, vol. 66, pp. 139-149, April 2015.
  4. E. Budak, “Analytical models for high performance milling. Part I: Cutting forces, structural deformations and tolerance integrity”, Int. J. Mach. Tools Manuf, vol. 46, no. 12, pp. 1478-1488, October 2006.
  5. H. Saglam, S. Yaldiz and F. Unsacar, “The effect of tool geometry and cutting speed on main cutting force and tool tip temperature”, Mater. Des., vol. 28, no. 1, pp. 101-111, 2007.
  6. M.E. Merchant, “Basic mechanics of the metal cutting process”, ASME J. Appl. Mech, vol. 66, pp. 168–175, 1944.
  7. E.H. Lee and B.W. Shaffer, “The theory of plasticity applied to a problem of machining”, ASME Trans. J. Appl. Mech., vol. 18, pp. 405–413, 1951.
  8. S. Kannan, H.A. Kishawy and I. Deiab, “Cutting forces and TEM analysis of the generated surface during machining metal matrix composites”, J. Mater. Process. Technol, vol. 209, no. 5, pp. 2260-2269, 2009.

Ayrıntılar

Birincil Dil

İngilizce

Konular

-

Bölüm

-

Yayımlanma Tarihi

22 Haziran 2016

Gönderilme Tarihi

20 Mayıs 2016

Kabul Tarihi

-

Yayımlandığı Sayı

Yıl 2016 Cilt: 2 Sayı: 2

Kaynak Göster

APA
Karabulut, S. (2016). Study on Machining Parameters for Thrust Force and Torque in Milling AA7039 Composites Reinforced with Al2O3/B4C/SiC Particles. International Journal of Engineering Technologies IJET, 2(2), 68-75. https://doi.org/10.19072/ijet.05966
AMA
1.Karabulut S. Study on Machining Parameters for Thrust Force and Torque in Milling AA7039 Composites Reinforced with Al2O3/B4C/SiC Particles. IJET. 2016;2(2):68-75. doi:10.19072/ijet.05966
Chicago
Karabulut, Sener. 2016. “Study on Machining Parameters for Thrust Force and Torque in Milling AA7039 Composites Reinforced with Al2O3/B4C/SiC Particles”. International Journal of Engineering Technologies IJET 2 (2): 68-75. https://doi.org/10.19072/ijet.05966.
EndNote
Karabulut S (01 Haziran 2016) Study on Machining Parameters for Thrust Force and Torque in Milling AA7039 Composites Reinforced with Al2O3/B4C/SiC Particles. International Journal of Engineering Technologies IJET 2 2 68–75.
IEEE
[1]S. Karabulut, “Study on Machining Parameters for Thrust Force and Torque in Milling AA7039 Composites Reinforced with Al2O3/B4C/SiC Particles”, IJET, c. 2, sy 2, ss. 68–75, Haz. 2016, doi: 10.19072/ijet.05966.
ISNAD
Karabulut, Sener. “Study on Machining Parameters for Thrust Force and Torque in Milling AA7039 Composites Reinforced with Al2O3/B4C/SiC Particles”. International Journal of Engineering Technologies IJET 2/2 (01 Haziran 2016): 68-75. https://doi.org/10.19072/ijet.05966.
JAMA
1.Karabulut S. Study on Machining Parameters for Thrust Force and Torque in Milling AA7039 Composites Reinforced with Al2O3/B4C/SiC Particles. IJET. 2016;2:68–75.
MLA
Karabulut, Sener. “Study on Machining Parameters for Thrust Force and Torque in Milling AA7039 Composites Reinforced with Al2O3/B4C/SiC Particles”. International Journal of Engineering Technologies IJET, c. 2, sy 2, Haziran 2016, ss. 68-75, doi:10.19072/ijet.05966.
Vancouver
1.Sener Karabulut. Study on Machining Parameters for Thrust Force and Torque in Milling AA7039 Composites Reinforced with Al2O3/B4C/SiC Particles. IJET. 01 Haziran 2016;2(2):68-75. doi:10.19072/ijet.05966

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