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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Interfacial reactions in SiCf/C/Ti17 composites dominated by texture of carbon coatings
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Interfacial reactions in SiCf/C/Ti17 composites dominated by texture of carbon coatings

机译:SICF / C / TI17复合材料中的界面反应,由碳涂层质地主导

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摘要

Two kinds of turbostratic carbon coatings with different texture were deposited on SiC fibers using single filament chemical vapor deposition by changing substrate temperature: 920 and 1000 degrees C, labeled as C-920 and C-1000, respectively, followed by coating Ti17 matrix, and then SiCf/C-920/Ti17 and SiCf/C-1000/Ti17 composites were fabricated by hot isostatic pressing (HIP). C-1000 possesses much stronger texture than C-920, evidenced by combined tests of X-ray photoelectron spectrum, Raman spectroscopy and transmission electron microscope (TEM). Interfacial reactions of SiCf/C-920/Ti17 and SiCf/C-1000/Ti17 composites are found to depend strongly on texture of turbostratic carbon coatings after HIP, revealing that C-1000 with stronger texture can hinder the outward diffusion of C and inward diffusion of matrix elements more efficiently than C-920, which is elucidated by the results of scanning electron microscope, TEM and energy-dispersive spectroscopy. Interdiffusion between C coating and Ti17 matrix results in formation of C gradient distribution in interfacial reaction layer for both composites, in which interfacial zone of fiber and matrix can be described as turbostratic C parallel to amorphous C parallel to fine-grained TiC parallel to transition TiC parallel to coarse-grained TiC, however, each sub-layer thickness is determined by the texture of C coating. Based on these results, the model of interfacial reactions dominated by texture of C coatings was proposed. (C) 2017 Published by Elsevier Ltd.
机译:使用单丝化学气相沉积在SiC纤维上沉积两种具有不同质地的涡轮响碳涂层,通过改变衬底温度:920和1000℃,分别标记为C-920和C-1000,然后涂覆Ti17基质,和然后通过热等静压(臀部)制造SICF / C-920 / TI17和SICF / C-1000 / TI17复合材料。 C-1000具有比C-920更强的质地,通过X射线光电子能谱,拉曼光谱和透射电子显微镜(TEM)的组合试验证明。发现SICF / C-920 / TI17和SICF / C-1000 / TI17复合材料的界面反应强烈地依赖于髋关节后的涡轮瘤碳涂层的纹理上,揭示了具有较强质地的C-1000可以阻碍C和向内的向外扩散基质元素的扩散比C-920更有效,通过扫描电子显微镜,TEM和能量分散光谱的结果阐明。 C涂层和Ti17基质之间的相互扩散导致两种复合材料的界面反应层中的C梯度分布形成,其中纤维和基质的界面区可以被描述为与与过渡TIC平行的细粒度平行的微晶C平行的涡轮响铃C.然而,平行于粗粒颗粒TiC,每个子层厚度由C涂层的质地确定。基于这些结果,提出了由C涂层质地主导的界面反应模型。 (c)2017年由elestvier有限公司出版

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