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首页> 外文期刊>JSME International Journal. Series A, Solid mechanics and material engineering >Evaluation of High-Temperature Oxidation Characteristics of Two Directionally Laminated C/C Composite Fabricated by the Preformed Yarn Method
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Evaluation of High-Temperature Oxidation Characteristics of Two Directionally Laminated C/C Composite Fabricated by the Preformed Yarn Method

机译:预制纱法制备两种定向层合C / C复合材料的高温氧化性能评价

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摘要

Oxidation kinetics of as-received and preheat-treated C/C composites fabricated by the preformed yarn method were investigated. The weight loss due to gasification was measured with oxidation time. In situ observation of microscopic morphological change due to oxidation was conducted using a laser microscope during heating in flowing air. Then, degraded inner and outer morphologies of C/C composites oxidized at various temperatures were examined through observation by SEM and measurement of pore distribution using a mercury porosimeter. As a result, degraded morphologies due to oxidation were extremely different depending on the oxidation temperature range. The inner structural changes became obvious as the oxidation temperature decreased. Therefore, the rate-determining process of the oxidation was changed from the surface chemical reaction to reactive gas diffusion across the boundary layer of a gaseous oxidation product as the oxidation temperature increased. The oxidation reactivity of C/C composites was related to metallic impurities such as iron and residual stress generated during fabrication.
机译:研究了预制纱线法制备的C / C复合材料的氧化动力学。用氧化时间测量由于气化引起的重量损失。在流动的空气中加热期间,使用激光显微镜对由于氧化引起的微观形态变化进行原位观察。然后,通过SEM观察和使用水银孔率计测量孔分布,检查在各种温度下氧化的C / C复合材料的降解的内部和外部形态。结果,取决于氧化温度范围,由于氧化而导致的劣化形态非常不同。随着氧化温度降低,内部结构变化变得明显。因此,随着氧化温度的升高,氧化速率的确定过程从表面化学反应变为反应性气体扩散穿过气态氧化产物的边界层。 C / C复合材料的氧化反应性与金属杂质(如铁)和制造过程中产生的残余应力有关。

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