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Fiber-reinforced composites are a combination of materials, in which a matrix made of plastic, ceramic, or metal is reinforced with different materials in the form of fibers or fiber-based textiles.
A fiber-reinforced composite (FRC) is a composite building material that consists of three components: [1] [2] the fibers as the discontinuous or dispersed phase, the matrix as the continuous phase, and; the fine interphase region, also known as the interface.
1 Ιαν 2021 · Abstract. The present century has witnessed composite materials to be the most promising and shrewd material for a variety of applications. Among them fiber (natural or synthetic) reinforced composites (FRCs) have gained significant interest owing to the high demand for lightweight materials with high strength for specific applications.
1 Introduction. Fiber-reinforced composites (FRCs) are widely researched engineering materials that comprise a broad range of reinforcing fibers and matrix characteristics. Selection of the fiber and matrix in an FRC depends on the application and the desired mechanical strength of the composite.
Recent advancements in genetic engineering, the development of natural fiber, and composite science and technology will offer valuable opportunities for enhanced value-added materials from renewable resources with improved support for global sustainability campaigns.
21 Μαΐ 2023 · Fiber composites are widely used in different technological industries given their high mechanical properties and low density. Applications for these materials are commonly found in passengers or freight transport systems, such as aircraft fuselages, vehicle frames, and sports implementation.
Fiber-reinforced polymer composite offers not only high strength to weight ratio, but also reveals exceptional properties such as high durability; stiffness; damping property; flexural strength; and resistance to corrosion, wear, impact, and fire.