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Processing of Ceramic Matrix Composites

机译:陶瓷基复合材料的加工

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The main processing techniques used to fabricate ceramic matrix composites (CMCs) with continuous fibers are reviewed. They involve liquid or gas phase routes, the starting material often being a fiber preform. In the reactive melt infiltration processes, the preform is densified with a liquid (Al or Si) reacting with the preform or the atmosphere (0_2 or N_2). The polymer impregnation/pyrolysis as well as the slurry impregnation/hot pressing processes are based on techniques previously utilized for polymer matrix composites or/and monolithic ceramics. In the gas phase routes, or chemical vapor infiltration (CVI), the fiber preform is densified with the matrix, which is formed in-situ as the result of chemical reactions involving a gaseous precursor. When performed under isothermal/isobaric conditions (I-CVI) at low temperatures and pressures, the process is slow but highly flexible. The densification rate is significantly improved when a temperature gradient or/and a pressure gradient (F-CVI) are applied to the preform. Finally, pressure-pulsed CVI (P-CVI) is a unique technique for the fabrication of composites with highly engineered interphases or matrices.
机译:综述了用于制造具有连续纤维的陶瓷基复合材料(CMC)的主要加工技术。它们涉及液相或气相路线,起始材料通常是纤维预成型坯。在反应性熔体渗透过程中,预成型坯被与预成型坯或大气(0_2或N_2)反应的液体(Al或Si)致密化。聚合物浸渍/热解以及浆料浸渍/热压工艺是基于先前用于聚合物基质复合物或/和整体陶瓷的技术。在气相路线或化学气相渗透(CVI)中,纤维预成型坯被基质致密化,基质是由涉及气态前体的化学反应形成的。在低温和等压/等压条件下(I-CVI)进行时,该过程缓慢但高度灵活。当将温度梯度或/和压力梯度(F-CVI)应用于预成型件时,致密化速率得到显着提高。最后,压力脉冲CVI(P-CVI)是用于制造具有高度工程化的相间或基质的复合材料的独特技术。

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