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Development of the tailored SiC/SiC composites by the combined fabrication process of ICVI and NITE methods

机译:通过ICVI和NITE方法的组合制造工艺开发量身定制的SiC / SiC复合材料

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摘要

In order to improve the thermo-mechanical performances of SiC/SiC composite, process improvement and modification by the combination of nano-infiltration and transient eutectic-phase (NITE) method and chemical vapor infiltration (CVI) method were studied. Multilayered PyC/SiC fiber coating and matrix infiltration within fiber-tows were prepared with isothermal/isobaric CVI (ICVI) method and full-densification of SiC matrix was examined with NITE methods using four kinds of processing options. Applied pressure was useful for nearly-full matrix densification due to the promoting infiltration driving force of SiC nano-powder intra-fiber-tows, but simultaneously caused the sever degradation of fibers and interphase with fracture, resulting in lower strength. Increase of additives amount and additional polymer were effective ways for matrix densification by SiC nano-power infiltration intra-fiber bundles without pressure. Thermal conductivity was greatly improved with the decrease of matrix porosity. The tailoring of thermo-mechanical properties might be easily controlled by the SiC matrix porosity without process-induced fibers and interphases degradations.
机译:为了提高SiC / SiC复合材料的热机械性能,研究了纳米浸渗与瞬态共晶相(NITE)方法和化学气相浸渗(CVI)方法相结合的工艺改进和改进。采用等温/等压CVI(ICVI)方法制备多层PyC / SiC纤维涂层和纤维束内的基体渗透,并使用四种处理方法通过NITE方法检查SiC基体的完全致密化。施加的压力由于促进了SiC纳米粉纤维内丝束的渗透驱动力而对几乎完全的基体致密化有用,但同时导致纤维严重降解和相间断裂,从而导致强度降低。增加添加剂的量和添加额外的聚合物是通过SiC纳米功率渗透纤维内束进行无压致密化的有效方法。导热系数随着基质孔隙率的降低而大大提高。 SiC基体的孔隙率很容易控制热机械性能,而不会引起工艺引起的纤维和相间降解。

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