Effect of Wettability and Uniform Distribution of Reinforcement Particle on Mechanical Property (Tensile) in Aluminum Metal Matrix Composite—A Review

Author:

James JohnyORCID,Annamalai A. RajaORCID,Muthuchamy A.,Jen Chun-PingORCID

Abstract

There is a massive demand for low-weight high strength materials in automotive, space aerospace, and even structural industries in this present engineering world. These industries attract composites only because of their high strength, resistance to wear, and low weight. Among these composites, metal matrix composite finds wide applications due to its elevated properties, excellent resistance property, corrosion resistance, etc. The reinforcements exist in particles, fiber, and whiskers. Among the three, particles play an important role because of their availability and wettability with the metal matrix. Additionally, among the various metal matrices such as aluminum, magnesium, copper, titanium, etc., aluminum plays a vital role among metal matrices because of its cost, availability in abundance, and castability. Stir casting is the most inexpensive and straightforward composite fabrication technique among the prevailing techniques. Even though so many factors contribute to the elevated property of composites, metal matrix, and reinforcement phase, uniform distribution and wettability are essential factors among all the other factors. This review aims to develop a composite with elevated property in a cost-effective manner. Cost includes metal matrix, reinforcement, and processing technique. Various works have been tabulated to achieve the above objective, and analysis was carried out on tensile strength concerning microstructure. This review paper explores the challenges in composite fabrication and finds a solution to overcome them.

Funder

Ministry of Science and Technology, Taiwan

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

Reference102 articles.

1. Metal—Matrix composites;Haghshenas;Ref. Modul. Mater. Sci. Mater. Eng.,2016

2. Reference Module in Materials Science and Materials Engineering;Haghshenas,2016

3. Toxicity and biocompatibility properties of nanocomposites for musculoskeletal tissue regeneration;Liu,2016

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