Literature DB >> 33669892

Effect of Variation of SiC Reinforcement on Wear Behaviour of AZ91 Alloy Composites.

Anil Kumar1,2, Santosh Kumar2, Nilay Krishna Mukhopadhyay3, Anshul Yadav4, Virendra Kumar1, Jerzy Winczek5.   

Abstract

In this investigation, the extensive wear behaviour of materials was studied using SiC reinforced magnesium alloy composites fabricated through the stir casting process. The wear properties of AZ91 alloy composites with a small variation (i.e., 3%, 6%, 9% and 12%) of SiC particulates were evaluated by varying the normal load with sliding velocity and sliding distance. The worn surfaces were examined by scanning electron microscope to predict the different wear mechanisms on the pin while sliding on the hard disk in the dry sliding wear test condition. The microhardness of the SiC reinforced AZ91 composites was found to be more than the un-reinforced AZ91 alloy. Pins tested at load 19.62 N, and 2.6 m/s exhibited a series of short cracks nearly perpendicular to the sliding direction. At higher speed and load, the oxidation and delamination were observed to be fully converted into adhesion wear. Abrasion, oxidation, and delamination wear mechanisms were generally dominant in lower sliding velocity and lower load region, while adhesion and thermal softening/melting were dominant in higher sliding velocity and loads. The wear rate and coefficient of friction of the SiC reinforced composites were lower than that of the unreinforced alloy. This is due to the fact of higher hardness exhibited by the composites. The wear behaviour at the velocity of 1.39 m/s was dominated by oxidation and delamination wear, whereas at the velocity of 2.6 m/s the wear behaviour was dominated by abrasion and adhesion wear. It was also found that the plastic deformation and smearing occurred at higher load and sliding velocity.

Entities:  

Keywords:  AZ91; SiC; magnesium alloy; metal matrix composites; wear

Year:  2021        PMID: 33669892     DOI: 10.3390/ma14040990

Source DB:  PubMed          Journal:  Materials (Basel)        ISSN: 1996-1944            Impact factor:   3.623


  1 in total

1.  In Situ Formation of ZrB2 and Its Influence on Wear and Mechanical Properties of ADC12 Alloy Mixed Matrix Composites.

Authors:  Lalta Prasad; Niteesh Kumar; Anshul Yadav; Anil Kumar; Virendra Kumar; Jerzy Winczek
Journal:  Materials (Basel)       Date:  2021-04-23       Impact factor: 3.623

  1 in total

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