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Online-Joining of C/SiC-C/SiC via slurry reaction and precursor infiltration and pyrolysis process with C/SiC pins

机译:C / SiC-C / SiC在线连接通过浆料反应和前体渗透和具有C / SiC引脚的热解过程

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C/SiC composites have widely application prospects in the field of aeronautic and aerospace for their excellent properties. The joining of C/SiC composites is a key to fabricate large and complex components. In this paper, ID C/SiC pins were prepared by precursor infiltration and pyrolysis (PIP) process and used to join C/SiC composites by Slurry react (SR) and PIP process. The shear strength of the C/SiC pins with different carbon fiber volumes was investigated with the maximum shear strength as high as 339.46MPa. Influences of C/SiC pins on the joining properties of C/SiC composites were studied. The shear strength and fiexural strength of C/SiC-C/SiC joining are improved from 9.17MPa and 30.41MPa without pins to 20.06MPa and 75.03MPa with one C/SiC pin (diameter 2mm), respectively. The reliability of C/SiC-C/SiC joining is also improved with C/SiC pins in that the fracture mode changes from catastrophic without pins to non-catastrophic. The SEM photos show a strong bond between joining layer and C/SiC composites without obvious interface.
机译:C / SIC复合材料在航空航天领域具有广泛的应用前景,以实现其优异的性能。 C / SIC复合材料的连接是制造大型和复杂组件的键。在本文中,通过前体浸润和热解(PIP)方法制备ID C / SiC引脚,并用浆料反应(SR)和PIP工艺加入C / SiC复合材料。研究了具有不同碳纤维体积的C / SiC引脚的剪切强度,最大剪切强度高达339.46MPa。研究了C / SiC引脚对C / SiC复合材料连接性质的影响。 C / SiC-C / SIC连接的剪切强度和纤维强度从9.17MPa和30.41MPa改善,没有引脚至20.06MPa和75.03MPa,分别具有一个C / SiC引脚(直径2mm)。 C / SiC-C / SIC连接的可靠性也用C / SiC引脚提高,因为裂缝模式从灾难性变化而没有引脚到非灾难性。 SEM照片显示连接层和C / SIC复合材料之间的强粘合,而无明显接口。

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