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Preparation of C/C‐SiC Composites from All‐Cellulose Precursors

机译:制备C / C公/碳化硅复合材料

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摘要

Abstract All‐cellulose composites (ACCs) are manufactured from high‐performance cellulose fibers and a cellulose‐containing ionic liquid (IL) as matrix‐forming dope via wet‐winding processes, using different concentrations of cellulose in the IL. ACCs are carbonized at 1650?°C and then infiltrated with liquid silicon. Application of a carbonization aid (ammonium dihydrogenphosphate, ADHP) substantially improves the carbon yield after carbonization but also results in the depletion of the mechanical properties of the final carbon/carbon silicon carbide (C/C‐SiC) material. The microstructure of the porous carbon/carbon preforms strongly depends on both the concentration of cellulose in the IL and the concentration of ADHP. A C/C‐SiC composite manufactured from 6 wt% cellulose in the matrix‐forming dope, in the absence of ADHP, has a maximum flexural strength of 60?MPa. New C/C‐SiC composites with different shapes including Z‐profiles and tubes are successfully manufactured from pre‐shaped ACC precursors. These composites keep their shape during carbonization and the final siliconization process step.
机译:<标题复合材料(ACCs)制造高纤维素纤维和性能纤维素含有离子液体(IL)矩阵形成通过湿涂料检测绕组应承担的过程,使用不同浓度的纤维素IL。ACCs碳化在1650吗?渗透与液体硅。碳化援助(磷酸二氢铵,ADHP)大大提高了碳收益碳化后还导致消耗的机械性能最终碳/碳化硅碳(C / C量原文如此)材料。碳/碳预先形成强烈依赖于两种在IL和纤维素的浓度ADHP的浓度。生产从6 wt %的纤维素矩阵形成应承担的涂料,在缺乏ADHP,的最大挠曲强度60 ? MPa。C / C碳化硅复合材料与不同的形状成功包括Z的概要文件和管生产提前了ACC前兆。这些复合材料在保持形状碳化和最终硅化过程的步骤。

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