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FABRICATION AND MECHANICAL PROPERTIES OF THE SiC FIBER REINFORCED OXIDE MATRIX COMPOSITES

机译:SiC纤维增强氧化物基复合材料的制造和力学性能

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A sintered SiC (Tyranno-SA) fiber-reinforced MAS glass matrix composite was fabricated by using a slurry infiltration method and hot-pressing. The microstructure and mechanical properties were investigated. To prepare the preform, the MAS glass slurry including a dispersing agent was infiltrated into a bundle of the fibers. The preform was then hot-pressed under the conditions of 1473 K, 30 MPa, 3.6 ksec. A unidirectionally-reinforced oxide matrix composite with 50 percent Vf. of the fiber and a density of 2.84 g/cm~3 was obtained. As the mechanical properties at room temperature, the three-point flexural strength and quasi-static adsorbed energy were 500 MPa and 6,000 J/m~2, respectively. Without graphite or an h-BN pre-coating on the surface of the fiber, pull-out and bridging of the fibers from the matrix was found, and this leads to a high value of the adsorbed energy. By TEM observation, nano-scale crystalline products were found between the fibers and the glass matrix. The push-out test reveals that this layer causes the appropriate debonding of the interface during the fracture process of the composite.
机译:通过使用浆料渗透方法和热压制造烧结SiC(Tyranno-SA)纤维增强MAS玻璃基质复合材料。研究了微观结构和机械性能。为了制备预制件,将包括分散剂的MAS玻璃浆料渗透到一束纤维中。然后在1473k,30mPa,3.6ksec的条件下热压预制件。具有50%VF的单向增强氧化物基质复合材料。纤维和密度为2.84g / cm〜3。作为室温下的机械性能,三点弯曲强度和准静态吸附能量分别为500MPa和6,000 j / m〜2。没有石墨或纤维表面上的H-BN预涂层,发现来自基质的纤维的拉出和桥接,这导致吸附能量的高值。通过TEM观察,在纤维和玻璃基质之间发现纳米级结晶产品。推出测试显示,在复合材料的断裂过程中,该层导致界面的适当剥离。

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