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Fabrication of SiC/SiC composites by means of in situ Crystallization of SiC Fibers

机译:SiC纤维原位结晶制备SiC / SiC复合材料

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摘要

A novel challenge, the in situ crystallization of Pre-SiC reinforced-fiber during the fabrication of SiC/SiC composites, has been made for cost effectiveness. Constituent parts of each fabricated material with various manufacturing conditions were assessed by microscopic observation. The depending issues of a prototype process were rather serious that the unwanted areas were conspicuously observed in several places, such as a residual oxide area, unsintered area, course matrix, porosity along the fiber-tows, and a huge scale of deformation on fiber-tows. Crystallization process of Pre-SiC fiber itself caused volume contraction about 24.5%, which result in formation of a gap between the fiber-tow and pyrolytic carbon (PyC) interface. The optimization has been successfully made for a new fabrication technique by controlling most of the known defects. As a result, defects are rarely observed in final product of composite material.
机译:为了节约成本,提出了一个新的挑战,即在SiC / SiC复合材料的制造过程中原位SiC增强纤维的原位结晶。通过显微镜观察评估具有各种制造条件的每种制造材料的组成部分。原型工艺的相关问题相当严重,以至于在几个地方都明显地看到了多余的区域,例如残留的氧化物区域,未烧结的区域,层间基质,沿纤维丝束的孔隙率以及纤维上的巨大形变。拖。 Pre-SiC纤维本身的结晶过程导致体积收缩约24.5%,这导致在纤维束和热解碳(PyC)界面之间形成间隙。通过控制大多数已知的缺陷,已经成功地对一种新的制造技术进行了优化。结果,在复合材料的最终产品中很少观察到缺陷。

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