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Raman mapping of local phases and local stress fields in silicon-silicon carbide composites

机译:碳化硅-碳化硅复合材料中局部相和局部应力场的拉曼映射

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Silicon-silicon carbide (Si-SiC) composites have emerged as a new class of materials with superior properties like high resistance against oxidation and corrosion, low thermal expansion coefficient and high mechanical strength. This enabled the composite to be successfully utilized in different industrial applications, such as combustion chambers, gas turbines, heat exchangers, fusion reactors, seal rings, welding nozzles, valve discs and ceramic engine parts. The strength of such composites showed a dependence upon their internal granular structure, since the latter was found to affect local stress distribution in the composite. In this study, we developed a Raman spectroscopy based technique to monitor local composition and local stress fields in Si-SiC composites. The Raman technique was used to monitor local stress fields' development as the composite is globally loaded in compression for two different composites with reinforcement volume fractions of 13 and 34%. Our results show that the Raman based technique is very suitable for monitoring the local stress fields and their development as the composite is globally loaded. Secondly, it was found that in composites with high volume fraction of reinforcement, local stress fields are more uniform and homogeneous than in composites with low fraction of reinforcement. (c) 2005 Elsevier B.V. All rights reserved.
机译:碳化硅-碳化硅(Si-SiC)复合材料已经成为一种新型材料,具有优异的性能,如高抗氧化和腐蚀性能,低热膨胀系数和高机械强度。这使得该复合材料可以成功地用于不同的工业应用中,例如燃烧室,燃气轮机,热交换器,聚变反应堆,密封环,焊接喷嘴,阀盘和陶瓷发动机零件。这种复合材料的强度显示出其内部颗粒结构的依赖性,因为发现后者会影响复合材料中的局部应力分布。在这项研究中,我们开发了一种基于拉曼光谱的技术来监测Si-SiC复合材料中的局部成分和局部应力场。拉曼技术用于监测局部应力场的发展,因为复合材料在压缩状态下全局加载了两种不同的复合材料,其增强体积分数分别为13%和34%。我们的结果表明,基于拉曼的技术非常适合监视局部应力场及其在复合材料被全局加载时的发展。其次,发现具有高体积分数的复合材料的局部应力场比具有低体积分数的复合材料的局部应力场更均匀和均匀。 (c)2005 Elsevier B.V.保留所有权利。

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