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- W2480490467 abstract "Publisher Summary Traditional or conventional ceramics are generally in monolithic form. However, ceramic materials are lacking energy-dissipating phenomenon, which causes them to fail in a catastrophic fashion, i.e. makes them unforgiving. Therefore, a critical need exists for increasing the toughness of ceramic materials. With a view to achieving high fracture toughness of ceramic materials, the major effort of the materials community in the field of structural materials has been directed toward incorporating a variety of energy-dissipating phenomena in the fracture process of ceramics, i.e. imparting damage-tolerant behavior. To improve the toughness and in-service reliability of ceramic materials is thus the major objective. One of the important approaches to attaining these goals is through composite and glass/glass- Ceramics Matrix Composites (CMCs) and these are among the materials attracting major attention today. In the past, designers worked with data on the properties of homogeneous, isotropic materials and designed their components to fit the ranges of design allowances by using fiber-reinforced polymer matrix and metal–matrix composites for structural applications. The use of such composites increased to the point where boronand graphite-fiber reinforced epoxy resin and boron-reinforced aluminum were restricted to applications up to 300°C. However, recently, the concept of composite materials has permitted almost limitless tailoring of composites to create entirely new designs never previously possible. The quest for excellent environmental aspects and improved characteristics of materials prompted the development of fiber-reinforced glass/glass-ceramic matrix composite. The fibers should not be greatly degraded during processing either by handling or by chemical reaction and the resultant fiber–matrix interface must have the characteristics necessary to prevent excess fiber–matrix bonding." @default.
- W2480490467 created "2016-08-23" @default.
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- W2480490467 date "2006-01-01" @default.
- W2480490467 modified "2023-10-17" @default.
- W2480490467 title "Fibre-reinforced glass/glass-ceramic matrix composites" @default.
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- W2480490467 doi "https://doi.org/10.1533/9781845691066.1.58" @default.
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