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CHARACTERIZATION OF MATRIX MATERIALS FOR ADDITIVE MANUFACTURING OF SILICON CARBIDE-BASED COMPOSITES

机译:基于碳化硅复合材料的添加剂制造基质材料的表征

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Silicon carbide fiber reinforced silicon carbide matrix composites are enabling materials for a number of high-temperature and extreme environment applications. The development of additive manufacturing technologies for their fabrication and manufacturing are expected to increase their viability and speed up their implementation. However, in order to investigate additive manufacturing of these composites, a number of materials and process parameters have to be developed and optimized. In this study, polymer mixtures consisting of various types of SiC, Si, and C particulates along with other additives were used as fiber prepreg materials. The prepreg materials were characterized using thermogravimetric analysis (TGA) to observe characteristic decomposition patterns in air and nitrogen from room temperature up to 1000°C. X-ray diffraction (XRD) was used to identify phases in samples pyrolyzed at temperatures of 700, 1000, 1200, and 1450°C. Effect of fillers, temperature, and pyrolysis conditions on the weight loss behavior and final reaction products have been studied.
机译:碳化硅纤维增强的碳化硅基质复合材料使材料的一些高温和极端环境中的应用。添加剂制造技术的制造和生产的发展,预计将增加他们的活力和加快实施。然而,为了研究添加制造这些复合材料的,许多材料和工艺参数,必须开发和优化。在这项研究中,包括各种类型的与其它的添加剂一起的SiC,硅,和C的颗粒的聚合物混合物用作纤维预浸材料。的预浸料坯材料用热重量分析(TGA),以从室温直至观察在空气和氮气特性分解图案1000 C,其特征°。 X射线衍射(XRD)被用来确定在700,1000,1200,和1450℃的温度下热解的样品中相。填料,温度,和减肥行为,并最终反应产物热解条件的影响进行了研究。

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