Profile
International Journal of Metallurgical & Materials Engineering Volume 1 (2015), Article ID 1:IJMME-117, 9 pages
http://dx.doi.org/10.15344/2455-2372/2015/117
Research Article
Reciprocating Wear Behavior of Al Alloys: Effect of Porosity and Normal Load

Avijit Sinha, Md. Aminul Islam* and Zoheir Farhat

Department of Process Engineering and Applied Science, Materials Engineering Program, Dalhousie University, Halifax, Nova Scotia, B3J2X4, Canada
Md. Aminul Islam, Department of Process Engineering and Applied Science, Materials Engineering Program, Dalhousie University, Halifax, Nova Scotia, B3J2X4, Canada; E-mail: md.aminul.islam@dal.ca
29 August 2015; 05 December 2015; 08 December 2015
Sinha A, Islam MDA, Farhat Z (2015) Reciprocating Wear Behavior of Al Alloys: Effect of Porosity and Normal Load. Int J Metall Mater Eng 1: 117. doi: http://dx.doi.org/10.15344/2455-2372/2015/117
The authors acknowledge the financial support provided by Auto21 and Mr. Randy Cooke for his assistance in sample preparation.

References

  1. Sarkar AD, Clarke J (1980) Friction and Wear of Aluminum-Silicon alloys. Wear 61:157-167. View
  2. Sarkar AD (1975) Wear of Aluminum-Silicon Alloys. Wear 31: 331-343. View
  3. Torabian H, Pathak JP, Tiwari SN (1994) Wear Characteristics of Al-Si Alloys. Wear 171: 49-58. View
  4. Hanna AH, Shehata F (1992) Friction and Wear of AI-Si Alloys. Lubrication Engineering 49: 473-476. View
  5. Konishi T, Klaus EE, Duda JL (1995) Wear Characteristics of Aluminum- Silicon Alloy Under Lubricated Sliding Conditions. SILE Preprint No. 95-MP-5E-1, 50th Annual Meeting of SILE, Chicago, Illinois, May 14-19.
  6. Davis FA, Eyre TS (1994) The Effect of silicon Content and Morphology on the Wear of Aluminum-Silicon Alloys Under Dry and Lubricated Sliding Conditions. Tribology International 27: 171-181. View
  7. Barber GC, Matthews JJ, Jafry S (1991) Wear and Scuff Resistance of Aluminum 390. Lubrication Engineering 47: 423-430.
  8. Ferrante J, Brainard WA (1979) Wear of Aluminum and Hypoeutectic Aluminum-Silicon Alloys in Boundary Lubricated Pin-on-Disk Sliding. NASA Technical Paper 1442. View
  9. Wang HW, Skeldon P, Thompson GE (1999) Tribological Enhancement of Aluminium by Porous Anodic Films Containing Solid Lubricants of MoS2 Precursors. Tribology Transactions 42: 202-209. View
  10. Goto, H., Omori, S. (2000) Tribological Characteristics of Particle and Chopped Fiber-Reinforced Al-Si Alloy Matrix Composites. Tribology Transactions 43: 57-65. View
  11. Rameshkumar T, Rajendran I (2013) Mechanical and Tribological Properties on Al-Sn-Si Alloy-Based Plain Bearing Material. Tribology Transactions 56: 268-274. View
  12. Prasad BK, venkateswarlu K, Modi OP, Jha AK, Das S, et al. (1998) Sliding Wear Behavior of some Al-Si Alloys: Role of shape and size of Si particles and Test conditions. Metallurgical and Materials Transactions 29A: 2747- 2752. View
  13. Shivanath R, Sengupta PK, Eyre TS (1997) Wear of Aluminium-Silicon Alloys. The British Foundrymen 70: 349-356.
  14. Yassen RS, Dwarakadasa ES (1983) Wear of Aluminium under Dry Sliding Conditions. Wear 84: 375-379. View
  15. Proudhon H, Savkova J, Basseville S, Guipont V, Jeandin M, et al. (2014) Experimental and numerical wear studies of porous Reactive Plasma Sprayed Ti-6Al-4V/TiN composite coating. Wear 311: 159-166. View
  16. Lin Z, hui QX, Bo-hua D, Xin-Bo H, Ming-li Q (2008) Effect of porosity on wear resistance of SiCp/Cu composites prepared by pressureless infiltration. Transactions of Nonferrous Metal Society of China 18:1076- 1082. View
  17. Dubrujeaud B, Vardavoulias M, Jeandin M (1994) The role of porosity in the dry sliding wear of a sintered ferrous alloy.Wear 174: 155-161. View
  18. Chen Q, Li D, Cook B (2009) Is porosity always detrimental to the wear resistance of materials? A computational study on the effect of porosity on erosive wear of TiC/Cu composites. Wear 267: 1153-1159. View
  19. Simchi A, Danninger H (2004) Effects of porosity on delamination wear behaviour of sintered plain iron. Powder Metallurgy 47: 73-80. View
  20. Li DY, Luo YC (2001) Effects of TiN nano-particles on porosity and wear behavior of TiC/TiNi tribo composite. Journal of Materials Science Letters 20: 2249-2252. View
  21. Hamid AA, Ghosh P, Jain S, Ray S (2006) Influence of particle content and porosity on the wear behaviour of cast in situ Al(Mn)–Al2O3(MnO2) composite. Wear 260: 368-378. View
  22. Sarikaya O (2005) Effect of some parameters on microstructure and hardness of alumina coatings prepared by the air plasma spraying process. Surface& Coatings Technology 190: 388- 393. View
  23. Raghukiran N, Kumar R (2013) Processing and dry sliding wear performance of spray deposited hyper-eutectic aluminum–silicon alloys. Journal of Materials Processing Technology 213: 401- 410. View
  24. Kanchanomaia C, Saengwichian B, Manonukul A (2013) Delamination wear of metal injection moulded 316L stainless steel. Wear 267: 1665-1672. View
  25. Tekmen C, Ozdemir I, Cocen U, Onel K (2003) The mechanical response of Al–Si–Mg/SiCp composite: influence of porosity. Materials Science and Engineering A 360: 365-371. View
  26. Danninge H, Jangg G, Weiss B, Stickler R (1993) Microstructure and mechanical properties of sintered iron. Part I. Basic considerations and review of literature. Powder Metallurgy International 25: 111-117. View
  27. Bergmark A, Alzati L, Persson U (2002) Crack initiation and crack propagation in copper powder mixed PM steel. Powder Metallurgy Progress 2: 222-230. View
  28. Gerard DA, Koss DA (1990) Low cycle fatigue crack initiation: modeling the effect of porosity. International. Journal of Powder Metallurgy 26: 337-343. View
  29. Sahin Y (2003) Preparation and some properties of SiC particle reinforced aluminium alloy composites. Materials and Design 24: 671-679. View
  30. Sahin Y, Acilar M (2003) Production and properties of SiCp-reinforced aluminium alloy composites. Composites: Part A Applied Science and Manufacturing 34: 709-718. View
  31. Yih P, Chung DDL (1997) Titanium diboride copper-matrix composites. Journal of Materials Science 32: 1703-1709. View
  32. Lu Y, Liu Z (2013) Coupled Effects of Fractal Roughness and Self- Lubricating Composite Porosity on Lubrication and Wear. Tribology Transactions 56: 581-591. View
  33. Hardin RA, Beckermann C (2007) Effect of porosity on the stiffness of cast steel. Metallurgical And Materials Transactions A 12: 2992-3006. View
  34. Ray S, Fishman SG, Dhingra AK (1988) Proceedings on Cast Reinforced Metal Composites. ASM International 77-86. View
  35. Suh NP (1977) An overview of the delamination theory of wear. Wear 44: 1-16. View
  36. Gui M, Kang, SB Lee, JM (2000) Influence of porosity on dry sliding wear behaviour in spray deposited Al-6Cu-Mn/SiCp composite. Materials Science and Engineering A 293: 146-56. View
  37. Deshpande PK, Lin RY (2006) Wear resistance of WC particle reinforced copper matrix composites and the effect of porosity. Materials Science and Engineering A 418: 137-145. View
  38. Vardavoulias M, Jouanny-Tresy C, Jeandin M (1993) Sliding-wear behaviour of ceramic particle-reinforced high-speed steel obtained by powder metallurgy. Wear 165: 141-149. View
  39. Islam MDA, Farhat ZN (2011) Effect of porosity on dry sliding wear of Al–Si alloys. Tribology International 44: 498-504. View
  40. Dwivedi DK (2010) Adhesive wear behaviour of cast aluminium–silicon alloys: Overview. Materials and Design 31: 2517-2531. View
  41. Elmadagli M, Perry T, Alpas AT (2007) A parametric study of the relationship between microstructure and wear resistance of Al–Si alloys. Wear 262: 79- 92. View
  42. Singla M, Singh L, Chawla V (2009) Study of Wear Properties of Al- SiC Composites. Journal of Minerals & Materials Characterization & Engineering 8: 813-819. View
  43. Wei MX, Chen KM, Wang SQ, Cui XH (2011) Analysis for Wear Behaviors of Oxidative Wear. Tribology Letters 42:1-7. View
  44. Kumar S, Balasubramanian V (2010) Effect of reinforcement size and volume fraction on the abrasive wear behaviour of AA7075 Al/SiCp P/M composites-A statistical analysis. Tribology International 43: 414-422. View
  45. Corrochanoa J, Walker JC, Lieblich M, Ibanez J, Rainforth WM (2011) Dry sliding wear behaviour of powder metallurgy Al–Mg–Si alloy-MoSi2 composites and the relationship with the microstructure.Wear 270: 658- 665. View
  46. Bermudez MD, Martinez-Nicolas G, Carrion FJ, Martinez-Mateo I, Rodriguez JA, et al. (2001) Dry and lubricated wear resistance of mechanically-alloyed aluminium-base sintered composites. Wear 248: 178–186. View
  47. Yasmin T, Khalid AA, Haque MM (2004) Tribological (wear) properties of aluminum–silicon eutectic base alloy under dry sliding condition. Journal of Materials Processing Technology 153–154: 833-838. View
  48. Hamn MD, Talib LA, Daud AR (1996) Effect of element additions on wear property of eutectic aluminium-silicon alloys.Wear 194: 54-59. View
  49. Casellas D, Beltran A, Prado JM, Larson A, Romero A (2004) Microstructural effects on the dry wear resistance of powder metallurgy Al–Si alloys. Wear 257:730-739. View
  50. Mohammad ES, Karimzadeh F (2011) Wear behavior of aluminum matrix hybrid nanocomposites fabricated by powder metallurgy. Wear 271: 1072– 1079. View
  51. Rahimian M, Parvin N, Ehsani N (2011) The effect of production parameters on microstructure and wear resistance of powder metallurgy Al–Al2O3 composite. Materials and Design 32:1031–1038. View
  52. Ravindran P, Manisekar K, Rathika P, Narayanasamy P (2013) Tribological properties of powder metallurgy Processed aluminium self lubricating hybrid composites with SiC additions. Materials and Design 45: 561-570. View
  53. Hamid AA, Ghosh PK, Jain SC, Ray S (2008) The influence of porosity and particles content on dry sliding wear of cast in situ Al(Ti)–Al2O3(TiO2) composite. Wear 265: 14–26. View
  54. Yılmaz O, Buytoz S (2001) Abrasive wear of Al2O3-reinforced aluminiumbased MMCs. Composites Science and Technology 61: 2381-2392. View
  55. Johnson K (1987) Contact mechanics, Cambridge University Press, UK.
  56. Gyimah GK, Chen D, Huang P (2008) Dry Sliding Studies of Porosity on Sintered Cu-based Brake Materials. Transaction on control and mechanical systems 2: 219-224. View
  57. Alshmri F, Atkinson HV, Hainsworth SV, Haidon C, Lawes SDA (2014) Dry sliding wear of aluminium-high silicon hypereutectic alloys. Wear 313: 106- 116. View
  58. Deya SK, Perry TA, Alpas AT (2009) Micromechanisms of low load wear in an Al-18.5% Si alloy. Wear 267: 515-524. View