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Mechanical properties of ceramic-metal composites by pressure infiltration of metal into porous ceramics

机译:通过将金属压力渗入多孔陶瓷中来实现陶瓷-金属复合材料的机械性能

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High-volume-fraction Si_3N_4-Al-based composites have been fabricated by high-pressure casting method. The effects of chemical composition of infiltrated Al alloys, microstructures of Si_3N_4 preforms, and test temperature on the mechanical properties were investigated. The maximum four-point bending strength and fracture toughness of the composites reached 924 and 8.2 MPa(m~(1/2)), respectively. Increasing sintering temperature above 1650 deg C for Si_3N_4 preforms resulted in an enhancement of fracture toughness at the expense of degradation in flexural strength. However, an increase in sintering time for Si_3N_4 preforms at moderately sintering temperature yielded an improvement in both flexural strength and fracture toughness of the corresponding composites. Both flexural strength and fracture toughness decreased with increasing temperature and CIP pressure due to inhomogeneous distribution of Al phase and some defects introduced into the preforms during the casting process. The Si_3N_4-6061 Al composite exhibited the lowest strength, which may be attributed to the presence of porosities and interfacial reactions.
机译:通过高压铸造法制备了高体积分数的Si_3N_4-Al基复合材料。研究了渗铝合金的化学成分,Si_3N_4预成型坯的显微组织和测试温度对力学性能的影响。复合材料的最大四点弯曲强度和断裂韧性分别达到924和8.2 MPa(m〜(1/2))。 Si_3N_4预成型坯的烧结温度提高到1650摄氏度以上,导致断裂韧性增强,但抗弯强度降低。但是,在适当的烧结温度下增加Si_3N_4预成型坯的烧结时间会提高相应复合材料的抗弯强度和断裂韧性。弯曲强度和断裂韧性都随着温度和CIP压力的增加而降低,这是由于Al相分布不均匀以及在铸造过程中引入预成型坯中的一些缺陷所致。 Si_3N_4-6061 Al复合材料的强度最低,这可能归因于孔隙和界面反应的存在。

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