James Johny, Annamalai A Raja, Muthuchamy A, Jen Chun-Ping
Department of Mechanical Engineering, Sri Venkateswara College of Engineering & Technology, Chittoor 517127, India.
Centre for Innovative Manufacturing Research, Vellore Institute of Technology, Vellore 632014, India.
Nanomaterials (Basel). 2021 Aug 29;11(9):2230. doi: 10.3390/nano11092230.
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.
在当今工程领域,汽车、航空航天乃至结构工业对低重量高强度材料有着巨大需求。这些行业青睐复合材料,仅仅是因为它们具有高强度、耐磨以及重量轻的特点。在这些复合材料中,金属基复合材料因其卓越的性能、出色的抵抗性能、耐腐蚀性能等而得到广泛应用。增强体有颗粒、纤维和晶须三种形式。在这三种之中,颗粒因其可用性以及与金属基体的润湿性而发挥着重要作用。此外,在诸如铝、镁、铜、钛等各种金属基体中,铝在金属基体中起着至关重要的作用,这是由于其成本、丰富的可用性以及可铸性。搅拌铸造是现有技术中最廉价且最直接的复合材料制造技术。尽管诸多因素促成了复合材料、金属基体和增强相性能的提升,但均匀分布和润湿性在所有其他因素中是至关重要的因素。本综述旨在以具有成本效益的方式开发一种具有卓越性能的复合材料。成本包括金属基体、增强体和加工技术。已将各项工作制成表格以实现上述目标,并针对微观结构对拉伸强度进行了分析。本综述文章探讨了复合材料制造中的挑战,并找到克服这些挑战的解决方案。