Fatigue Behavior of Ni-P Coated Si 3 N 4 Reinforced Al6061 Composites
Author:
Publisher
Elsevier BV
Subject
General Earth and Planetary Sciences,General Environmental Science
Reference35 articles.
1. Asif Iqbal.A.K.M, Yoshio Arai, Wakako Araki., 2013. Effect of Reinforcement Clustering on Crack Initiation Mechanism in a Cast Hybrid Metal Matrix Composite during Low Cycle Fatigue, Open Journal of Composite Materials, 2013, 3, p. 97-106.
2. Asthana.R & Rohatgi.P.K., 1993. On the melt infiltration of plain and nickel- coated with aluminum alloys”, Journal of Material Science Letters 11, p. 442-445.
3. Performance Study on Fatigue Behaviour in Aluminium Alloy and Alumina Silicate Particulate Composites;Arivukkarasan;Journal of Applied Science & Engineering,2013
4. Bekir Sadik Unlu, 2008. Investigation on Tribological and mechanical properties of Al2O3 –SiC reinforced Aluminum composites manufactured by casting or PM method. Materials & Design, 29 p. 2002-2008.
5. Cevdet Kaynak & Suha Boylu. 2006. Effects of SiC particulates on the Fatigue behavior of Al-alloy matrix composite, Materials and Design 27 p.776-782.
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