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带Nb膜中间层的Cu/α-Al2O3的扩散焊接

Diffusion Welding Cu to α-Al2O3 with Nb Film Interlayer

  • 摘要: 采用扫描和透射电镜、能谱分析、X射线衍射和4点弯曲试验研究了Nb膜中间层对单晶Cu与单晶α-Al2O3的扩散焊接特性以及接头组织和性能的影响。结果表明,通过电子束蒸镀获得的多晶Nb膜中间层扩散焊后具有织构组织,其密排面(110)平行于Al2O3的(0001)基面。Nb膜中间层的加入显著提高了Cu/Al2O3扩散焊接头的断裂能量,而扩散焊接温度可以与无Nb膜中间层时保持不变。带Nb膜中间层的Cu/Al2O3接头所具有的高断裂能量是由于Nb与Al2O3较强的键合以及断裂时金属侧较大的塑性变形功二者综合作用的结果。透射电镜观察表明,在Cu/Al2O3扩散焊接头的界面附近存在大量位错。

     

    Abstract: The diffusion welding behavior of single crystalline Cu to single-crystalline α-Al2O3 with a Nb film interlayer and the joint microstructure properties were studied by TEM, SEM/EDS analyses and four-point bend testing. The Nb film interlayer deposited by electron beam evaporation on the ceramic side prior to diffusion welding was found to be polycrystalline and fiber-textured after diffusion bonding, with the close-packed plane (110) being parallel to the (0001) basal plane of α-Al2O3. The fracture energy of Cu/α-Al2O3 diffusion-welded joints was greatly increased by the introduction of the thin film Nb interlayer whereas diffusion welding can be performed at a relatively low temperature (900℃). The increase in fracture energy of the joints with Nb film interlayer was attributed to the strong adhesion of Nb to α-Al2O3 combined with larger plastic deformation in the metal side during fracture. TEM observations showed large amounts of dislocations existing at the interfacial regions.

     

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