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The Effect of Heat Treatment on the Microstructure and Mechanical Properties of KD-II SiC Fibers in Air

机译:热处理对空气中KD-II SiC纤维的微观结构和力学性能的影响

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The polycarbosilane-derived KD-II SiC fibers were exposed in air at 1200°C for 1-100h and the effect of heat treatment on structures and properties were studied by elemental analysis, XRD, SEM and tensile test. Experimental results indicated that oxygen content, grain size of SiO_2 and oxide layer thickness increased, whereas the tensile strength decreased with rising the heat treatment time. When oxidizing over 20h, the amorphous silica crystallized into α-cristobalite and there were cracks on fibers surface and the cross section formed the skin-core structure with oxide layer wrapped inner SiC fibers after oxidizing for 100h. With the same experimental condition for Hi-Nicalon SiC fibers, the differences of oxidation resistance between KD-II and Hi-Nicalon SiC fibers were compared and the oxidation degradation of KD-II SiC fibers was analyzed.
机译:将聚氨基硅烷衍生的KD-II SiC纤维在空气中暴露在1200℃下1-100h,通过元素分析,XRD,SEM和拉伸试验研究了热处理对结构和性能的影响。 实验结果表明,氧含量,SiO_2和氧化物层厚度的粒度增加,而拉伸强度随着热处理时间上升而降低。 当氧化超过20小时时,无定形二氧化硅结晶到α-克里斯橡胶上,纤维表面上裂缝,横截面在氧化物氧化后与氧化物层缠绕的氧化物层形成100h。 采用相同的Hi-Nicalon SiC纤维的实验条件,比较了KD-II和Hi-Nicalon SiC纤维之间的抗氧化性的差异,分析了KD-II SiC纤维的氧化降解。

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