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Interfacial reaction studies of B4C-coated and C-coated SiC fiber reinforced Ti-43Al-9V composites

机译:B4C涂层和C涂层SiC纤维增强Ti-43Al-9V复合材料的界面反应研究

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摘要

The interfacial reactions of B_4C-coated and C-coated SiC fiber reinforced Ti-43Al-9V composites were investigated by scanning electron microscope and transmission electron microscope. The detailed mi-crostructures as well as the chemical composition throughout the reaction zone were identified. For SiCf/ B4C/TiAl composite, the reaction zone from B4C coating to TiAl matrix is composed of 4 layers, namely, a carbon-rich layer, a mixed layer of TiB_2 + amorphous carbon, a TiC layer and a mixed layer of TiB + Ti_2AlC For SiC_f/C/TiAl composite, the reaction zone from C coating to TiAl matrix is composed of 3 layers, namely, a fine-grained TiC layer, a coarse-grained TiC layer and a thick Ti_2AlC layer. For both kinds of composites, the reaction mechanisms of the interfacial reactions were analyzed, and the corresponding reaction kinetics were calculated. The activation energies of interfacial reaction in SiCf/B4C/TiAl composite and SiCf/B4C/TiAl composite are 308.1 kJ/mol and 230.7 kJ/mol, respectively.
机译:通过扫描电子显微镜和透射电子显微镜研究了B_4C涂层和C涂层SiC纤维增强Ti-43Al-9V复合材料的界面反应。确定了整个反应区的详细微观结构以及化学组成。对于SiCf / B4C / TiAl复合材料,从B4C涂层到TiAl基体的反应区由四层组成,即富碳层,TiB_2 +非晶碳混合层,TiC层和TiB +混合层。 Ti_2AlC对于SiC_f / C / TiAl复合材料,从C涂层到TiAl基体的反应区由三层组成,即细晶粒TiC层,粗晶粒TiC层和厚Ti_2AlC层。针对两种复合材料,分析了界面反应的反应机理,并计算了相应的反应动力学。 SiCf / B4C / TiAl复合材料和SiCf / B4C / TiAl复合材料的界面反应活化能分别为308.1 kJ / mol和230.7 kJ / mol。

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