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Microstructure and properties of Al-Mg-(Sc, Zr) welded joint

机译:Al-Mg-(SC,Zr)焊接接头的微观结构和性能

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摘要

Mechanical properties and microstructure of Al-Mg-(Sc, Zr) welded joint prepared by manual labor melt inert gas(MIG) welding method using Al-Mg and Al-Mg-Sc weld wire as filling materials were studied comparatively. The results show that the apparent recrystallization does not happen in heat-affected zone. It proves that Al-Mg-(Sc, Zr) alloy has a high capability of resistance to welding heat-soften. Using Al-Mg-Sc welding wire as filling material can obviously refine the grains of weld seam and improve its strength. The layer of small equal-axe grains in fusion area improves the joint strength between welded metal and base metal. The coefficients of welded joints when Al-Mg-Sc and Al-Mg welding wire are used as filling material are greater than 0. 90, respectively. The yield strength of welded joints with Al-Mg welding wire is only 187 MPa, one is as high as 287 MPa with Al-Mg-Sc welding wire, thus the working strength of the welded unit is greatly improved.
机译:通过手动劳动熔融惰性气体(MIG)焊接方法使用Al-Mg和Al-Mg-SC焊丝制备的Al-Mg-(Sc,Zr)焊接接头的机械性能和微观结构是相对填充材料的研究。 结果表明,表观重结晶不会发生在热影响区域中。 证明Al-Mg-(Sc,Zr)合金具有高能力对焊接耐热软化的能力。 使用Al-Mg-SC焊丝作为填充材料可明显优化焊缝颗粒并提高其强度。 融合区域中的小等轴晶粒层改善了焊接金属和基础金属之间的关节强度。 当使用Al-Mg-SC和Al-Mg焊丝作为填充材料时,焊接接头的系数分别大于0.90。 焊接接头与Al-Mg焊丝的屈服强度仅为187MPa,一个高达287MPa,具有Al-Mg-SC焊丝,因此焊接单元的工作强度大大提高。

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