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Joining of C{sub}f/SiC Ceramic Matrix Composite Using SiC-Si{sub}3N{sub}4 Preceramic Polymer

机译:使用SiC-Si {Sub} 3n {sub} 4 {sub} 4 {sub} 4 {sub} 4 {sub} 4 Preceramic聚合物

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Carbon fibre reinforced SiC (C{sub}f/SiC) as a promising high temperature structural material possesses broad prospects for aeronautical and astronautical applications. Joining technique is very important from both technical and economical points of view. Joining of C{sub}f/SiC to itself has been realized by reaction joining process using a preceramic polymer, polysilazane, as joining material (welding compound). The weld strength of joints is strongly affected by joining temperature and number of times of reinforcement, which comprises infiltration and pyrolysis of polysilazane. Samples were joined at temperatures ranging from 1100°C -1400°C. The maximum weld strength of joints is obtained at 1250°C. The reinforcement can remarkably increase the weld strength of joints. After three times of reinforcement the shearing strength of joints reaches 27.78MPa. Microstructural study and phase analysis reveal that the joining material has transformed into an amorphous ceramic interlayer composed of Si, C and N at 1100~1250°C, which is uniform and densified. The thickness of the interlayer is 2-3 μm. The contact at the interfaces is good without obvious cracks and pores. The amorphous ceramic interlayer transforms into crystal SiC and Si{sub}3N{sub}4 at 1400°C.
机译:碳纤维增强SiC(C {Sub} F / SIC)作为有前途的高温结构材料具有广泛的航空和宇航应用前景。从技术和经济的观点来看,加入技术非常重要。通过使用预凝胶聚合物,聚硅氮烷作为连接材料(焊接化合物),通过反应连接方法实现C {亚} F / SiC自身。接头的焊接强度受加入温度和增强次数的强烈影响,该增强次数包括聚硅氮烷的浸润和热解。在1100℃-1400℃的温度下加入样品。接头的最大焊接强度在1250℃下获得。增强件可以显着提高关节的焊接强度。在加固三次后,关节的剪切强度达到27.78MPa。微结构研究和相位分析表明,连接材料转化为在1100〜1250℃下由Si,C和N组成的无定形陶瓷层间,其是均匀和致密化的。中间层的厚度为2-3μm。界面的接触没有明显的裂缝和毛孔。非晶陶瓷层间在1400℃下变成晶体SiC和Si {sub} 3n {sub} 4。

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