Open Access Open Access  Restricted Access Subscription or Fee Access

Implications of ceramic – metal matrix compose

B. Goswami, T. K. Pathak

Abstract


Abstract

This article summarizes some formatives over WC-metal matrix composite surfacing on hard as well soft alloys. Composite surface has coated by laser, plasma and electroplating. WC-Ni composite has prepared by plasma transferred arc welding on steel surface. Thickness achieved from several mm on small parts to thin deposits on large surfaces. Cu-substrate accorded WC-Ni laser cladded deposition. Laser deposition of WC-Ni-NiCr on stainless has increased wear and erosion under flowing saline medium. Cladding is better than other methods. Stir cast processed mutually compensating composite from additives of WC and fly ash to regard weight in density merge.Al components in IC engine prevent seizure and improve tribology of harsh weather after Ni/WC embeds deposition. Con-cast Cu-alloy mould suffers from peeling prevented after Ni/WC laser deposition.

Keyword

Composite, Metal, Ceramics, Wear, Tribology


Full Text:

PDF

References


M. Bober, J. Jakubowski, A. Radziszewski, J. Senkara, CROSTRUCTURE AND MECHANICAL PROPERTIES OF Ni-WC THERMAL SPRAYED COMPOSITE COATINGS, ADVANCES IN MATERIALS SCIENCE, Vol. 18, No. 4 (58), December 2018

Ali Tahaei, Paul Horley, MattiaMerlin, David Torres-Torres, Gian Luca Garagnani, Rolando Praga,Vázquez, Felipe J. García, Ana Arizmendi-Morquecho, Characterization and Optimization of Ni-WC Composite Weld Matrix Deposited by Plasma-Transferred Arc Process, Metallurgical and Materials Transactions A, Volume 48, Issue 3, pp.1053-1063

YuryKorobov, YuliaKhudorozhkova, HolgerHillig, Alexander Vopneruk, AleksandrKotelnikov, Sergey Burov, PrabuBalu, Alexey Makarov, and Alexey Chernov, The E_ect of Thickness on the Properties of Laser-Deposited NiBSi-WC Coating on a Cu-Cr-ZrSubstrate, MDPI, Photonics 2019, 6, 127;

Yu Liu, TianhaoXu,Ying Liu,YaliGao,Chi Di; Wear and heat shock resistance of Ni-WC coating on mould copper plate fabricated by laser; Journal of Materials Research and Technology; Volume 9, Issue 4, July–August 2020, Pages 8283-8288

C.L. Hsieh, W.H. Tuan, Elastic properties of ceramic–metal particulate composites, Materials Science and Engineering A 393 (2005) 133–139

Pengxian Zhang, Yibin Pang, and Mingwei Yu; Effects of WC Particle Types on the Microstructures and Properties of WC-Reinforced Ni60 Composite Coatings Produced by Laser Cladding; Metals 2019, 9, 583

Srikanth.B.G, Characterization of Aluminium reinforced with Tungsten Carbide Particulate and Flyash Metal Matrix Composites, International Journal of Engineering Research & Technology (IJERT)ISSN: 2278-0181, Vol. 4 Issue 05, May-2015

B S Praveen Kumar and K M Narayanapa; Fatigue Performance Analysis of Ni-WC Composite Electro-Coated Gears; Grenze ID: 02.ICCTEST.2017.1.32 © Grenze Scientific Society, 2017; Proc. of Int. Conf. on Current Trends in Eng., Science and Technology, ICCTEST, 189-196

M. M. Quazi, M. Ishak, A. Arslan, M. A. Fazal, FarazilaYusof, B. S. Sazzad, M. Nasir Bashir and M. Jamshaid; Mechanical and tribological performance of a hybrid MMC coating deposited on Al–17Si piston alloy by laser composite surfacing technique; RSC Advances; Issue 13; 2018

C.L. Hsieh, W.H. Tuan, Elastic properties of ceramic–metal particulate composites, Materials Science and Engineering A 393 (2005) 133–139


Refbacks

  • There are currently no refbacks.