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Interface Microstructure and Mechanical Properties of SiC_p/2014Al Aluminum Matrix Composite Vacuum Brazing Joint

机译:SIC_P / 2014AL铝基复合真空钎焊接头的界面组织和力学性能

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This paper describes the brazing technique of SiC_p/2014Al aluminum matrix composite. The surface reinforcements were partly exposed and the surface was deposited by vapor deposition process. Observing the microstructure of the brazing joint, Cu and M6 aluminum filler metal are more adaptable for the brazing process than Ti and 4047 aluminum filler metal. The tensile strength of the as-welded joint can reach 181MPa. The fractography of the brazing joint indicates that the fill metal can not wet the parent composite, which is the main reason for the loss of strength. Furthermore, the porosity caused by high brazing temperature and the aggregated reinforcement on the parent composite are two other important reasons for the brazing joint strength lost.
机译:本文介绍了SIC_P / 2014AL铝基矩阵复合材料的钎焊技术。表面增强部分部分暴露,通过气相沉积方法沉积表面。观察钎焊接头,Cu和M6铝填充金属的微观结构对于钎焊过程比Ti和4047铝填充金属更适合。用焊接接头的拉伸强度可达181MPa。钎焊接接头的碎片表明填充金属不能润湿母体复合材料,这是强度丧失的主要原因。此外,通过高钎焊温度和母体复合材料上的聚集增强引起的孔隙率是钎焊的钎焊强度的另外两种重要原因。

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