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Effect of Nicalon SiC fibre heat treatment on short fibre reinforced ?-SiAlON ceramics

机译:Nicalon SiC纤维热处理对短纤维增强α-SiAlON陶瓷的影响

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摘要

SiC Nicalon fibre yarn was heat-treated at elevated temperature in a gas pressure furnace under CO atmosphere. Weak surface coating is essential for ceramic matrix composite (CMC) reinforcement. Therefore Nicalon SiC fibres were coated after CO heat treatment and then used for P-SiA10N ceramic reinforcement. The heat treated fibres were chopped about 1-2 mm, and ?-SiA10N z = 1 starting powders were prepared with conventional ball milling. The SiAlON starting composition and the short fibres were mixed with the certain amount of water to obtain a plastically formable mud. This mud was unaxially cold-pressed to form green bodies and to decrease water content. The green bodies were hot pressed at elevated temperatures for half an hour to produce CMC samples. Vickers hardness test showed that heat-treated fibre reinforcement of ?-SiAlON composites provided higher fracture toughness. Uniform fibre distribution, fibre coating, matrix densification and phase transformation were examined by SEM and XRD analysis.
机译:SiC Nicalon纤维纱在CO气氛下在气压炉中在高温下进行了热处理。弱表面涂层对于增强陶瓷基复合材料(CMC)至关重要。因此,Nicalon SiC纤维在CO热处理后进行涂覆,然后用于P-SiA10N陶瓷增强。将热处理过的纤维切碎约1-2mm,并用常规球磨制备α-SiA10Nz= 1的起始粉末。将SiAlON起始组合物和短纤维与一定量的水混合以获得可塑性成形的泥浆。将该泥浆轴向冷压以形成生坯并降低水含量。将生坯在高温下热压半小时,以生产CMC样品。维氏硬度测试表明,经热处理的β-SiAlON复合材料纤维增强材料具有更高的断裂韧性。通过SEM和XRD分析检查纤维的均匀分布,纤维涂层,基体致密化和相变。

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