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首页> 外文期刊>Acta polytechnica >ANALYSIS OF THE PROPERTIES OF AW2099 ALUMINIUM-LITHIUM ALLOY WELDED BY LASER BEAM WITH AW5087 ALUMINIUM-MAGNESIUM FILLER MATERIAL
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ANALYSIS OF THE PROPERTIES OF AW2099 ALUMINIUM-LITHIUM ALLOY WELDED BY LASER BEAM WITH AW5087 ALUMINIUM-MAGNESIUM FILLER MATERIAL

机译:AW5087铝镁填料激光束焊接AW2099铝 - 锂合金特性分析

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摘要

EN AW2099 aluminium lithium alloy, 2.0mm in thickness, was used as an experimental material. EN AW2099 belongs to the 3rd generation of aluminium lithium alloys. The third generation was developed to improve the disadvantages of the previous generation, such as anisotropy in mechanical properties, low fracture toughness, corrosion resistance and resistance to fatigue crack growth, as well. Aluminium magnesium 5087 filler wire with a diameter of 1.2mm was used for the welding. Crack free weld joints were produced after an optimization of welding parameters. The microstructure of weld metal and mechanical properties of weld joints were investigated. Equiaxed zone (EQZ) was observed at the fusion boundary. The character of grains changed in the direction towards the weld centre, from the columnar dendrite zone to equiaxed dendrite zone in the weld centre. The microstructure of the weld metal matrix consisted of -aluminium. Alloying elements enrichment was found at the inter-dendritic areas, namely copper and magnesium. The microhardness decrease in the weld metal due to a dissolution of strengthening precipitates was measured. The microhardness was slightly higher in comparison to a weld produced by a laser welding without a filler material. The tensile strength of the weld joint reached around 67% of the base material’s strength and the fracture occurred in the weld metal.
机译:EN AW2099铝锂合金,厚度2.0mm,用作实验材料。 EN AW2099属于第3代铝锂合金。第三代是开发的,以改善前一代的缺点,例如机械性能,低断裂韧性,耐腐蚀性和抗疲劳裂纹生长的各向异性。铝镁5087粒填料,直径为1.2mm焊接。在优化焊接参数之后生产裂缝自由焊接接头。研究了焊接金属和焊接接头力学性能的微观结构。在融合边界处观察到等轴区(EQZ)。谷物的特征在焊接中心的方向上变化,从柱状树枝状区到焊接中心的等轴枝晶区。焊接金属基质的微观结构由-aluminium组成。在树突间区域发现合金元素富集,即铜和镁。测量由于强化沉淀物的溶解而导致焊接金属的显微硬度降低。与没有填充材料的激光焊接产生的焊接相比,微硬度略高。焊接接头的拉伸强度达到基材的强度约为67%,并且在焊接金属中发生裂缝。

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