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Effect of Temperature on Sliding Wear Mechanism under Lubrication Conditions
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International Journal of Engineering (IJE)
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Volume:  5    Issue:  2
Pages:  176-241
Publication Date:   May / June 2011
ISSN (Online): 1985-2312
Pages 
176 - 184
Author(s)  
 
Published Date   
31-05-2011 
Publisher 
CSC Journals, Kuala Lumpur, Malaysia
ADDITIONAL INFORMATION
Keywords   Abstract   References   Cited by   Related Articles   Collaborative Colleague
 
KEYWORDS:   Dry sliding wear, Surface film, Friction coefficient, Wear particles, Oil type 
 
 
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Experimental program using ball-on-cylinder tester has been conducted to investigate the effects of temperature, normal load, sliding speed and type of lubricating oil on sliding wear mechanism. The worn surfaces and debris have been examined. Surface examination of the tested samples using scanning electron microscope SEM was used to study the wear particles and the wear surfaces. The results show that the temperature of the oils affects the probability of adhesion, oxidation, wear rates, and friction coefficient. At room temperature (40oC) and under lubrication conditions, friction and wear decreases with the increase of the running time. The increase in applied normal load tends to reduce the friction in all types of oils. The phosphorated oil SAE 90 was superior in minimizing friction and wear as compared with other oils. The results have shown that the lubricant temperature has a significant role in wear mechanism. 
 
 
 
1 D. Shakhvorostof, K. Pohlmann, M. Scherge. “An energetic approach to friction, wear and temperature”, Wear, vol. 257, pp. 124-130, 2004.
2 M. Anderson and F.E. Schmidt. “Wear and lubricant testing”, ASTM manual, 2002, chap. 25.
3 R.G. Bayer. “Wear analysis for engineers”, HNB publishing, New York, 2002, pp. 220-230.
4 B. Cavdar. “Effect of temperature, substrate type, additive and humidity on the boundary lubrication in a linear perfluoropoly-alky lather fluid”. Wear, vol.206, pp. 15-23, 1997.
5 M. Masuko, S. Hirose, H. Okabe. “Boundary lubrication characteristics of polyolester class synthetic lubricant applied to silicon nitride at high temperature”, Lubr-Eng., vol. 52, pp. 641- 647, 1996.
6 Ghazi Al-Marahleh. “Mechanism of sliding wear under lubrication condition”, Journal of Applied Sciences, vol. 5, pp. 862-867, 2005.
7 P. J. Blau. “Glossary of terms, friction lubrication and wear technology”, ASTM Intl., vol. 18: pp. 180-210, 1992.
8 M. J. Neale. “The tribology handbook, second ed.”. Butterworth-Heinemann, Oxford, 1995, pp. 280-360.
9 Z. Peng, T.B. Kirk, Z. L. X. Xu. ”The development of three dimensioned imaging techniques of wear particle analysis”, Wear, vol. 203/204, pp. 418-424, 1997.
10 P.A. Willerment, R. O. Carter, P. J. Schmitz, M. Everson, D. J. Scholl, W. H. Weber. “Structure and properties of lubricant-derived anti-wear films”. Lub. Sci., vol. 9, pp. 325-348, 1997.
11 M. L. S. Fuller, M. Kasrai, G. M. Bancroft, K. Fyfe, K.H. Tan. ”Solution decomposition of ZDDP and its effect on anti-wear and thermal film formation studied by X-ray absorption spectroscopy”, Tribology International, vol. 31, no. 10, pp. 627-644, 1998.
12 C. Q. Yuan et al. Wear, vol. 257 pp. 812-822, 2004.
13 B. Bhushan, B. K. Gupta. ”Handbook of Tribology”, MC Graw-Hill inco, 1991.
14 H. G. horn. “ASTM Handbook”, 18, 1992, p. 399.
15 Oil-Owei, B. J. Roylance. “The effect of solid contamination on the wear and critical failure load in a sliding lubricated contact”, Wear, vol. 112, pp. :255-259,1986.
16 S. W. E. Earles, D. Povfil. “5th Conf. Lubrication Wear”, Plymouth, Inst. Mech. Engrs., Preprints, p. 171, 1967.
17 B.J Roylance. “Industrial wear particle atlas”, 1997
 
 
 
 
 
 
 
 
Nofal Al-Araji : Colleagues
Hussein Sarhan Sarhan : Colleagues  
 
 
 
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