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王娟, 李亚江, S.A.GERASIMOV. Al2O3-TiC/Q235真空扩散钎焊界面组织及抗剪强度[J]. 焊接学报, 2008, (12): 25-28.
引用本文: 王娟, 李亚江, S.A.GERASIMOV. Al2O3-TiC/Q235真空扩散钎焊界面组织及抗剪强度[J]. 焊接学报, 2008, (12): 25-28.
WANG Juan, LI Yajiang, S. A. GERASIMOV. Microstructure and shear strength of diffusion brazed Al2O3-TiC/Q235 joint[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2008, (12): 25-28.
Citation: WANG Juan, LI Yajiang, S. A. GERASIMOV. Microstructure and shear strength of diffusion brazed Al2O3-TiC/Q235 joint[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2008, (12): 25-28.

Al2O3-TiC/Q235真空扩散钎焊界面组织及抗剪强度

Microstructure and shear strength of diffusion brazed Al2O3-TiC/Q235 joint

  • 摘要: 为了获得Al2O3-TiC陶瓷基复合材料与Q235钢的接头,采用Ti/Cu/Ti复合中间层对Al2O3-TiC复合材料与Q235低碳钢进行了真空扩散钎焊。通过扫描电镜、能谱分析和电子探针、抗剪试验等测试方法对Al2O3-TiC/Q235扩散钎焊界面的组织、成分及结合强度进行分析。结果表明,控制加热温度为1110℃,可获得界面抗剪强度122MPa的Al2O3-TiC/Q235扩散钎焊接头,Ti/Cu/Ti复合中间层与Al2O3-TiC和Q235润湿性较好,并发生一定程度的扩散反应,在Al2O3-TiC与Q235之间形成厚度约80μm的界面过渡区,过渡区内形成的组织结构主要是Ti3AlC2,Fe2Ti,Cu和TiC。

     

    Abstract: An Al2O3-TiC/Q235 joint, Al2O3-TiC ceramic composite with steel Q235, was obtained by diffusion brazing in vacuum, using a combination of Ti and Cu as multi-interlayer.The interfacial strength was measured by shear testing and the result was explained by the fracture morphology.Microstructure of the Al2O3-TiC/Q235 joint was investigated by scanning electron microscope (SEM), energy-dispersion spectroscopy (EDS)and X-ray diffraction (XRD).The results indicate that the Al2O3-TiC/Q235 joint with a shear strength of 122 MPa can be obtained by controlling heating temperature at 1 110℃, multi-interlayer Ti/Cu/Ti is fused fully and diffused reaction to produce an obvious interfacial transition zone with a thickness of about 80 μm, and there are Ti3AlC2, Fe2Ti, Cu and TiC in the transition zone.

     

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