The Effect of Heat Treatment on Wear Properties of Ni-B-CNT Electroless Coating with Different Carbon Nanotube Concentration on AISI 4340 Steel

Author:

Wais Alaa Mohammed Hussein1,Abid Ali Abdul Raheem2

Affiliation:

1. Al-Mustaqbal University College

2. Babylon University

Abstract

Study wear resistance for heat treatment of Ni-B-CNT electroless coatings. Different concentrations for CNT (0 ,0.35 and 0.7 g/l Ni-B-CNT composite coatings deposition on 4340 steel. After the procedure of coating, all samples were heat treatment. The test wear of a coating was valued with pin on disk technique. Preparation of Ni–B–CNT electroless coatings are with using nickel chloride in alkaline bath, borohydride and Multi walled carbon nanotubes. characterization with FESEM, micro hardness, XRD and surface roughness. Study for surfaces of worn with EDS and FESEM. Micro hardness results are show that the larger hardness1010 HV is gained by heat treatment for coating (Ni-B- 0.35 g/L CNT) because of concentration CNT caused structure conversion for coating Ni-B from amorphous to crystalline. Also, CNT prevent maximum heat production and decrease of the friction coefficient during test wear. CNT aggregation was noted result the presence for more particles (Ni-B - 0.7g/l CNT) that occur create roughness and also lead to increase in rate of wear because of big particles with weakly joined in matrix of Ni.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference44 articles.

1. A. R. Boccaccini and I. Zhitomirsky, Mater. Sci., vol.6, (2002) p.251.

2. D. Thiemig and A. Bund, Surf. Coat. Tech., vol. 202, (2008) p.2976.

3. Z. Liu and W. Gao, Surf. Coat. Tech., vol. 200, (2006) p.5087.

4. L. p. Wu, J. j. Zhao, Y. p. Xie and Z.d. Yang, Trans. of Nonferrous Met. Soc. China., vol. 2, (2010) pp. s630.

5. Riedel A. Electroless nickel plating. Finishing Publication LTD., London, (1989).

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