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Effect of multiple thermal cycles on metallurgical and mechanical properties during multi-pass gas metal arc welding of Al 5083 alloy

机译:多次热循环对Al 5083合金多通气金属弧焊期间冶金和力学性能的影响

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摘要

Multi-pass gas metal arc welding was carried out for Al 5083 alloy plate with thickness 30 mm. During multi-pass welding of thick plate, the former welding pass experienced multiple thermal cycles that came from subsequent welding passes. This work focused on the effect of thermal cycle on metallurgical characteristics and mechanical properties. Different from what had long been recognized that welding thermal cycle was harmful, the results indicated that multiple thermal cycles caused the partial transition from columnar grains to equiaxed grains, which finally contributed to the refinement of microstructure. Increased precipitated particles resulted in the improvement of strengthening effect. These beneficial effects of microstructure and precipitated phase led to the increase of micro-hardness and the improvements of tensile strength and ductility. As the progress of welding process, overall properties of the welded joint improved. Conclusion could be made that appropriate thermal cycles were beneficial during multi-pass welding of Al 5083 alloy.
机译:为Al 5083合金板进行多通气金属电弧焊接,厚度为30mm。在厚板的多遍焊接期间,前焊接通行证经历了随后焊接通行证的多个热循环。这项工作主要集中在热周期对冶金特性和机械性能的影响。与已认识到焊接热循环有害的不同,结果表明,多个热循环导致从柱状晶粒到等轴晶粒的部分过渡,这最终导致了微观结构的细化。增加沉淀的颗粒导致提高强化效果。微观结构和沉淀相的这些有益效果导致微硬度的增加和拉伸强度和延展性的改善。作为焊接过程的进展,焊接接头的整体性质改善。结论可以在Al 5083合金的多遍焊接期间适当的热循环是有益的。

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