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Mg/Al异种材料真空扩散焊界面区域的显微组织

Microstructure in interface zone of diffusion-bonded joint of Mg/Al dissimilar materials

  • 摘要: 采用真空扩散焊技术对Mg/Al异种材料进行了焊接。采用金相显微镜、扫描电镜(SEM)、显微硬度计及X射线衍射(XRD)对扩散界面附近的显微组织及性能进行了试验研究。试验结果表明,Mg/Al异种材料真空扩散焊在加热温度Tp=450~490℃,压力强度P=0.08~0.10 MPa,保温时间t=40~60 min时能得到良好的扩散焊接头。扩散焊界面过渡区形成了致密的新相化合物层,断口形貌呈粗糙暗灰色,以解理断裂为主并伴有脆性的混合型断口,扩散界面过渡区生成了MgAl、Mg3Al2、Mg2Al3等金属间化合物。

     

    Abstract: Magnesium (Mg1) and aluminum (1070 A) were bonded by vacuum diffusion bonding technology. The microstrueture of the Mg/Al diffusion bonded joint was studied by means of metallography, micro-hardness test, scanning electron microscope and X-ray diffraction. The diffusion bonding parameters: the heat temperature Tp=450-490℃,the pressure P=0.08-0.10 MPa, the holding time t=40-60 min.The experiment results indicated that the new compact phase was formed in the transition zone of Mg/Al diffusion bonded joint. The fracture morphology of Mg/Al diffusion bonded joint mainly consists of coarse and gray fracture, and the fracture is mainly the mixed fracture of cleavage.There are the intermetallic compounds MgAl, Mg3Al2 and Mg2Al3 in the diffusion transition zone.

     

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