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- W4387622982 abstract "The current raw materials are wearing off naturally and are losing their emphasis on engineers, so engineers and designers are shifting their preferences toward better and more attractive elements that prefer their objectives. Such elements are encompassed hybrid metal composites. They embed high strength, high heat, and oxidative confrontation of titanium with the increased rigidity provided by ceramic reinforcement. The composite material of the hybrid matrix is titanium hybrid matrix composite material. In hybrid matrix composites (HMCs), metal is an integral part of the built-in reinforcement, which is completely continuous. This chapter particularly emphasizes the applications of HMCs, specifically toward cutting tools, automobile fields, power electronics, and tank armors. Furthermore, this chapter compares HMCs with other materials concerning their characteristics and production procedures. The hybridization approach can accomplish the development of a hybrid composite by incorporating both natural and synthetic fiber reinforcement into a polymer matrix. This will result in the formation of a hybrid composite. Synergistic effects on characteristics can be created using hybrid composites, which are made by combining natural and synthetic fibers in a polymer matrix. These effects are impossible to achieve with regular composites. This article provides an in-depth discussion of hybrid composites, including their various varieties, a range of qualities, and the different conceivable material combinations. These materials usually rely on individual alloy wheels, use new processing technology, or have features manufactured for specific applications." @default.
- W4387622982 created "2023-10-14" @default.
- W4387622982 creator A5031968172 @default.
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- W4387622982 date "2023-01-01" @default.
- W4387622982 modified "2023-10-15" @default.
- W4387622982 title "Matrix hybrid composite materials" @default.
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- W4387622982 doi "https://doi.org/10.1016/b978-0-323-99126-1.00004-5" @default.
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