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Microstructure and Properties of W–Cu Composite/Fe-Based Powder Alloy Vacuum Brazed Joint with Different Filler Metals

机译:不同填充金属的W-Cu复合/ Fe基粉末合金真空钎焊接头的组织和性能

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W–Cu composite and Fe-based powder alloy were brazed with filler metals of Ag–Cu and Cu–Mn–Co alloys in a vacuum furnace. Both of filler metals can join W–Cu composite with Fe-based powder alloy directly in the experiment process. Microstructure, distribution of elements and fracture morphology were observed and analyzed using scanning electron microscope (SEM) and energy dispersive spectroscopy (EDS) methods, and phase composition of bonding area was analyzed by X-ray diffraction (XRD). The obtained results indicated that the smooth faying surface and dense microstructure of brazed joint were formed and the primary microstructure of brazing seam were, respectively, Ag(Cu) solid solution and Cu(Mn) solid solution, which ensured forming the stable connection of brazed joint. The bending strength of Ag-based and Cu-based brazed joint can, respectively, reach to 317 and 704 MPa, where fracture showed a typical ductile fracture characteristic. The fracture of Cu-based brazed joint located at brazing seam area, and the fracture of Ag-based brazed joint occurred in Fe-based powder alloy side.
机译:W-Cu复合材料和Fe基粉末合金在真空炉中与Ag-Cu和Cu-Mn-Co合金的钎料钎焊在一起。两种填充金属都可以在实验过程中直接将W-Cu复合材料与铁基粉末合金连接起来。使用扫描电子显微镜(SEM)和能量色散光谱(EDS)方法观察和分析显微组织,元素分布和断裂形态,并通过X射线衍射(XRD)分析结合区的相组成。结果表明,钎焊接头表面光滑,密实组织致密,钎缝的主要组织为Ag(Cu)固溶体和Cu(Mn)固溶体,保证了钎焊的稳定连接。联合。银基和铜基钎焊接头的弯曲强度分别可以达到317和704 MPa,其中断裂表现出典型的韧性断裂特征。位于钎焊区的Cu基钎焊接头断裂,Ag基钎焊接头断裂发生在Fe基粉末合金侧。

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