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Active Metal Brazing and Characterization of Brazed Joints in Titanium to Carbon-Carbon Composites

机译:钛到碳-碳复合材料中的活性金属钎焊和钎焊接头的表征

摘要

The Ti-metal/C-C composite joints were formed by reactive brazing with three commercial brazes, namely, Cu-ABA, TiCuNi, and TiCuSiI. The joint microstructures were examined using optical microscopy and scanning electron microscopy (SEM) coupled with energy dispersive spectrometry (EDS). The results of the microstructure analysis indicate solute redistribution across the joint and possible metallurgical bond formation via interdiffusion, which led to good wetting and spreading. A tube-on-plate tensile test was used to evaluate joint strength of Ti-tube/ C-C composite joints. The load-carrying ability was greatest for the Cu-ABA braze joint structures. This system appeared to have the best braze spreading which resulted in a larger braze/C-C composite bonded area compared to the other two braze materials. Also, joint loadcarrying ability was found to be higher for joint structures where the fiber tows in the outer ply of the C-C composite were aligned perpendicular to the tube axis when compared to the case where fiber tows were aligned parallel to the tube axis.
机译:Ti-金属/ C-C复合接头是通过反应钎焊与三种商用钎焊形成的,即Cu-ABA,TiCuNi和TiCuSiI。使用光学显微镜和扫描电子显微镜(SEM)结合能量色散光谱(EDS)检查接头的微观结构。显微组织分析的结果表明,溶质在整个接头处重新分布,并可能通过相互扩散形成冶金键,从而导致良好的润湿和扩散。板-管拉伸试验用于评估Ti-tube / C-C复合接头的接头强度。 Cu-ABA钎焊接头结构的承载能力最大。与其他两种钎焊材料相比,该系统似乎具有最佳的钎焊扩展性,从而导致更大的钎焊/ C-C复合粘结面积。同样,与纤维束平行于管轴排列的情况相比,发现C-C复合材料外层中的纤维束垂直于管轴排列的接合点结构的关节承载能力更高。

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