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A study of interface reaction zone in a SiC fibre/Ti-17 composite

机译:SiC纤维/ TI-17复合材料中界面反应区的研究

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摘要

The interface reaction zone (RZ) in a unidirectional continuous carbon-coated SiC fibre reinforced Ti-17 titanium alloy composite is investigated. Micro-computed tomography (CT), scanning and transmission electron microscopy are employed to characterize the fibre/matrix interface. It is revealed that the interface RZ is a 400 nm thick titanium carbide (TiC) layer which is composed of two sublayers, a 60 nm thick fine-grained sublayer and an approximate 340 nm thick coarse-grained sublayer. The RZ is formed through chemical reaction between carbon coating on the SiC fibre surface and Ti, Zr and Sn in the alloy matrix. The reaction is controlled by atom diffusion occurring at the fibre/matrix interface. However, in the reaction process, Al, Cr and Mo in the matrix are rejected and piled up in front of the RZ on the matrix side. A structure model is proposed to describe the formation mechanism of the interface RZ.
机译:研究了单向连续碳涂覆的SiC纤维增强Ti-17钛合金复合材料中的界面反应区(RZ)。 使用微计算机断层扫描(CT),扫描和透射电子显微镜,用于表征光纤/矩阵界面。 揭示界面RZ是400nm厚的碳化钛(TiC)层,其由两个子层组成,厚度为60nm厚的细粒子层和近似的340nm厚的粗粒子层。 通过在合金基质中的SiC纤维表面和Ti,Zr和Sn之间的碳涂层之间的化学反应形成RZ。 反应由在纤维/基质界面处发生的原子扩散来控制。 然而,在反应过程中,基质中的Al,Cr和Mo被拒绝并在基质侧的Rz前面堆积。 提出了一种结构模型来描述界面RZ的形成机制。

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