» Articles » PMID: 39336376

Recent Advancements in Fabrication of Metal Matrix Composites: A Systematic Review

Overview
Publisher MDPI
Date 2024 Sep 28
PMID 39336376
Authors
Affiliations
Soon will be listed here.
Abstract

Metal matrix composites (MMCs) are essential materials in various industries due to superior properties, such as high strength-to-weight ratios, better corrosion resistance, improved wear resistance and adaptability, developed by continuous improvements in their fabrication methods. This helps to meet the growing demand for high-performance and sustainable products. The industries that stand to gain the most are automotive and aerospace, where MMCs are used for car parts, airplane frames, and jet engines that need to be strong and lightweight. Furthermore, MMCs are being extensively used in the biomedical industry for implants and medical equipment because of their suitable mechanical integrity and corrosion resistance. Applications in heavy construction, defense, and even space exploration are noteworthy. The advancements in fabrication of MMCs have revolutionized the composite industry with their improved mechanical, tribological, and metallurgical properties. This review article offers an introduction and thorough examination of the most recent advancements (mostly within the last five years) in fabrication methods of MMCs. The novelty and modernization in the traditional processes and advanced processes are covered, along with discussing the process parameters' effects on the microstructure and properties of the composites. The review focuses on features and prospective applications of MMCs that have been greatly improved and extended due to such advancements. The most recent methods for developing MMCs, including friction stir processing (FSP), ultrasonic-assisted stir casting, and additive manufacturing, are discussed. Artificial intelligence and machine learning interventions for composite manufacturing are also included in this review. This article aims to assist researchers and scholars and encourage them to conduct future research and pursue innovations to establish the field further.

Citing Articles

Significance of the Powder Metallurgy Approach and Its Processing Parameters on the Mechanical Behavior of Magnesium-Based Materials.

Sharma S, Gajevic S, Sharma L, Mohan D, Sharma Y, Radojkovic M Nanomaterials (Basel). 2025; 15(2.

PMID: 39852707 PMC: 11767998. DOI: 10.3390/nano15020092.


Structure and Properties of Al-CNT-Based Composites Manufactured by Different Methods: A Brief Review.

Nurguzhin M, Janikeyev M, Omarbayev M, Yermakhanova A, Meiirbekov M, Zhumakhanov M Materials (Basel). 2025; 18(1.

PMID: 39795859 PMC: 11721926. DOI: 10.3390/ma18010214.


Recent Developments in Plastic Deformation Behavior of Titanium and Its Alloys During the Rolling Process: A Review.

Ryu D, Kim Y, Nahm S, Kang L Materials (Basel). 2025; 17(24.

PMID: 39769660 PMC: 11679294. DOI: 10.3390/ma17246060.

References
1.
Sharath B, Venkatesh C, Afzal A, Aslfattahi N, Aabid A, Baig M . Multi Ceramic Particles Inclusion in the Aluminium Matrix and Wear Characterization through Experimental and Response Surface-Artificial Neural Networks. Materials (Basel). 2021; 14(11). PMC: 8199435. DOI: 10.3390/ma14112895. View

2.
Abd El Aal M, El-Fahhar H, Mohamed A, Gadallah E . The Mechanical Properties of Aluminum Metal Matrix Composites Processed by High-Pressure Torsion and Powder Metallurgy. Materials (Basel). 2022; 15(24). PMC: 9781998. DOI: 10.3390/ma15248827. View

3.
Sarmah P, Gupta K . A Review on the Machinability Enhancement of Metal Matrix Composites by Modern Machining Processes. Micromachines (Basel). 2024; 15(8). PMC: 11356056. DOI: 10.3390/mi15080947. View