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Ablation behaviour and mechanical performance of ZrB_(2)-ZrC-SiC modified carbon/carbon composites prepared by vacuum infiltration combined with reactive melt infiltration
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作者 ZHANG Jia-ping su xiao-xuan +2 位作者 LI Xin-gang WANG Run-ning FU Qian-gang 《新型炭材料(中英文)》 SCIE EI CAS CSCD 北大核心 2024年第4期633-644,共12页
The development of advanced aircraft relies on high performance thermal-structural materials,and carbon/carbon com-posites(C/C)composited with ultrahigh-temperature ceramics are ideal candidates.However,the traditiona... The development of advanced aircraft relies on high performance thermal-structural materials,and carbon/carbon com-posites(C/C)composited with ultrahigh-temperature ceramics are ideal candidates.However,the traditional routes of compositing are either inefficient and expensive or lead to a non-uniform distribution of ceramics in the matrix.Compared with the traditional C/C-ZrC-SiC composites prepared by the reactive melt infiltration of ZrSi_(2),C/C-ZrB_(2)-ZrC-SiC composites prepared by the vacuum infiltration of ZrB_(2) combined with reactive melt infiltration have the higher content and more uniform distribution of the introduced ceramic phases.The mass and linear ablation rates of the C/C-ZrB_(2)-ZrC-SiC composites were respectively 68.9%and 29.7%lower than those of C/C-ZrC-SiC composites prepared by reactive melt infiltration.The ablation performance was improved because the volatilization of B_(2)O_(3),removes some of the heat,and the more uniformly distributed ZrO_(2),that helps produce a ZrO2-SiO2 continu-ous protective layer,hinders oxygen infiltration and decreases ablation. 展开更多
关键词 C/C composites ZrB_(2)-ZrC-SiC Vacuum filtration Reactive melt infiltration Ablation.
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PSF多相UV-Fenton体系原儿茶酸与龙胆酸的增效对比 被引量:3
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作者 苏晓轩 徐国鹏 +2 位作者 李献众 刘力章 陈建新 《中国环境科学》 EI CAS CSCD 北大核心 2021年第4期1624-1633,共10页
对比研究了原儿茶酸和龙胆酸对聚合硅酸铁(PSF)多相UV-Fenton体系降解橙Ⅱ的增效能力,分析了两种增效体系中铁离子转化、H2O2分解以及·OH生成之间的关系,探讨了两种增效试剂对PSF多相UV-Fenton体系的增效机制.结果表明:原儿茶酸和... 对比研究了原儿茶酸和龙胆酸对聚合硅酸铁(PSF)多相UV-Fenton体系降解橙Ⅱ的增效能力,分析了两种增效体系中铁离子转化、H2O2分解以及·OH生成之间的关系,探讨了两种增效试剂对PSF多相UV-Fenton体系的增效机制.结果表明:原儿茶酸和龙胆酸均能够有效促进催化剂Fe^(2+)生成与释放,进而提高体系·OH的浓度、促进橙Ⅱ的降解.相对原儿茶酸,龙胆酸对PSF的还原能力更强,其相应增效体系中·OH的浓度更高、橙Ⅱ的降解速度更快.0.2mmol/L的增效浓度下,橙Ⅱ在原儿茶酸和龙胆酸增效体系中第一段脱色速率常数能分别从基础体系的0.11min^(-1)提高至1.68和2.48min^(-1),分别增加14.27倍和21.55倍.原儿茶酸和龙胆酸能够循环增效PSF多相UV-Fenton体系降解橙Ⅱ,反应结束后PSF对Fe^(3+)的再吸附使得溶液总铁离子浓度低于5mg/L,从而避免催化剂铁元素的损失以及铁离子的二次污染,表明原儿茶酸和龙胆酸均是PSF多相UV-Fenton体系的高效增效试剂. 展开更多
关键词 多相UV-Fenton体系 聚合硅酸铁 原儿茶酸 龙胆酸 橙Ⅱ
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