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Mechanical properties and oxidation resistance of SiC_f/CVI-SiC composites with PIP-SiC interphase

机译:PIP-SiC相间SiC_f / CVI-SiC复合材料的力学性能和抗氧化性能

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摘要

SiC coatings were successfully synthesized on SiC fibers by precursor infiltration and pyrolysis (PIP) method using polycarbosilane (PCS) as precursor. The morphology of as-fabricated coatings was observed by SEM, and its structure was characterized by XRD and Raman spectrum. The SiC fiber reinforced chemical vapor infiltration SiC (SiC_f/CVI-SiC) composites with PIP-SiC coatings as interphase were fabricated. And, the effects of PIP-SiC interphase on mechanical properties of composites were investigated. The experimental results point out that the coating is smooth and there is little bridging between fibers. The coating is amorphous with SiC and carbon micro crystals. The flexural strength of composites with and without PIP-SiC interphase is 220 and 100 MPa, respectively. And the composites with PIP-SiC interphase obviously exhibit a toughened fracture behavior. The oxidation resistance of composites with PIP-SiC interphase is much better than that of composites with pyrolytic carbon (PyC) interphase.
机译:以聚碳硅烷(PCS)为前驱体,通过前驱体渗透和热解(PIP)方法成功地在SiC纤维上合成了SiC涂层。用SEM观察了涂层的形貌,并用XRD和拉曼光谱对其结构进行了表征。制备了具有PIP-SiC涂层作为相间相的SiC纤维增强化学气相渗透SiC(SiC_f / CVI-SiC)复合材料。并研究了PIP-SiC界面相对复合材料力学性能的影响。实验结果表明,该涂层是光滑的,并且纤维之间几乎没有桥接。涂层是无定形的,具有SiC和碳微晶。具有和不具有PIP-SiC中间相的复合材料的弯曲强度分别为220和100 MPa。具有PIP-SiC相间相的复合材料明显表现出增韧的断裂行为。 PIP-SiC相间复合材料的抗氧化性比热解碳(PyC)相间复合材料的抗氧化性好得多。

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