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Fabrication, mechanical properties and thermal stability of a novel glass matrix composite material reinforced by short oxycarbide fibres

机译:短碳氧化物纤维增强的新型玻璃基复合材料的制备,力学性能和热稳定性

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摘要

An aluminosilicate glass matrix composite material reinforced by randomly oriented SiC-based (Tyranno(TM)) chopped fibres was fabricated. Slurry dipping and hot-pressing techniques were used to prepare dense composites containing 45 vol% fibres uniformly dispersed in the glass matrix. The mechanical properties and fracture mechanisms of the composite under flexion and compression loading were studied. In flexure, the composite showed higher modulus and strength than the unreinforced glass. However, in compression, the strength of the composite was lower than that of the monolithic glass. Considering the potential application of the material at high temperatures, the thermal aging behaviour of the composite in air at temperatures between 500 and 700 degreesC was investigated. The composite retained its room-temperature compressive strength after exposure for 26 h at 500 degreesC. The variation of compressive strength measured after exposures at higher temperatures was ascribed to mechanisms of fibre/matrix interface oxidation and to the softening of the glass matrix. (C) 2002 Kluwer Academic Publishers. [References: 27]
机译:制备了由随机取向的SiC基短纤维(TyrannoTM)增强的铝硅酸盐玻璃基复合材料。使用浆料浸渍和热压技术来制备致密的复合材料,该复合材料包含45%(体积)的纤维均匀分散在玻璃基质中。研究了复合材料在弯曲和压缩载荷下的力学性能和断裂机理。在弯曲时,该复合材料显示出比未增强玻璃更高的模量和强度。然而,在压缩中,复合材料的强度低于整体玻璃的强度。考虑到材料在高温下的潜在应用,研究了复合材料在空气中在500到700摄氏度之间的热老化行为。该复合材料在500摄氏度下暴露26小时后仍保持其室温抗压强度。在较高温度下暴露后测得的抗压强度变化归因于纤维/基质界面氧化的机理和玻璃基质的软化。 (C)2002 Kluwer学术出版社。 [参考:27]

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