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首页> 外文期刊>Journal of Materials Science >THERMAL SHOCK BEHAVIOUR OF UNIDIRECTIONAL, 0-DEGREES/90-DEGREES, AND 2-D WOVEN FIBRE-REINFORCED CVI SIC MATRIX COMPOSITES
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THERMAL SHOCK BEHAVIOUR OF UNIDIRECTIONAL, 0-DEGREES/90-DEGREES, AND 2-D WOVEN FIBRE-REINFORCED CVI SIC MATRIX COMPOSITES

机译:单向,0度/ 90度和二维编织纤维增强CVI SIC矩阵复合材料的热冲击行为

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The thermal shock behaviour of Nicalon(TM) fibre-reinforced chemical vapour infiltrated SiC matrix composites with three different types of fibre architecture, unidirectional, 0 degrees/90 degrees, and 2-D woven, has been studied using the water quench technique. Thermal shock induced damage was characterized by the destructive four-point flexure technique and the nondestructive technique of Young's modulus measurement by the dynamic resonance method. It was shown that the unidirectional and 0 degrees/90 degrees composites did not possess satisfactory mechanical properties or resistance to thermal shock because these fibre architectures prevented the composites from attaining high density during infiltration. Excess carbon coating was also found in the unidirectional and 0 degrees/90 degrees composites. Oxidation of this carbon coating contributed to the property degradation at high quench temperature difference. By contrast, the composite with 2-D woven fibre architecture created using the 0 degrees/30 degrees/60 degrees cloth lay-up showed superior mechanical properties and thermal shock resistance. The nondestructive technique of Young's modulus measurement by the dynamic resonance method was successfully used in detecting the thermal shock damage. [References: 33]
机译:使用水淬技术研究了Nicalon(TM)纤维增强的化学气相渗透SiC基复合材料的热冲击行为,该复合材料具有三种不同类型的纤维结构,即单向,0度/ 90度和2-D编织。通过破坏性四点弯曲技术和动态共振法测量杨氏模量的非破坏性技术来表征热冲击引起的损伤。结果表明,单向和0度/ 90度复合材料不具有令人满意的机械性能或抗热冲击性,因为这些纤维结构阻碍了复合材料在渗透过程中获得高密度。在单向和0度/ 90度复合材料中也发现了多余的碳涂层。该碳涂层的氧化导致高淬火温度差下的性能下降。相比之下,使用0度/ 30度/ 60度布层制作的具有2-D编织纤维结构的复合材料表现出卓越的机械性能和抗热震性。动态共振法测量杨氏模量的无损技术已成功用于热冲击损伤的检测。 [参考:33]

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