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High Strength Nanotreated Filler Material for TIG Welding of AA6061

机译:AA6061的TIG焊接高强度纳米制填料填料

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Incorporating structural parts into functional assemblies using a variety of techniques, such as bolting, riveting, brazing, and welding is important for today's industry and society. When joining AA6061 by Tungsten Inert Gas welding, designers so far had to rely on filler materials, such as ER5356 and ER4043 to dilute the joints melting zone and therefore suppress AA6061's intrinsic susceptibility to hot cracking. However, welding with dissimilar alloys as filler materials is always a tradeoff between enabling the material for fusion welding and accepting drawbacks of the diluted melting zone's properties. In this work, a low volume fraction of titanium carbide nanopar-ticles were incorporated into AA6061 to fabricate filler rods. The fabricated AA6061-TiC filler material was further used to TIG weld AA6061 base material. The welds produced by using the nanotreated filler rods were free of cracks and showed exceptional mechanical properties in both as welded and post weld heat treatment condition. The new nanotreated AA6061 filler materials offer a great potential for widespread applications.
机译:使用各种技术将结构部件掺入功能组件中,例如螺栓连接,铆接,钎焊和焊接对于当今的行业和社会来说都很重要。当通过钨惰性气体焊接加入AA6061时,迄今为止设计师必须依赖于填料材料,例如ER5356和ER4043,以稀释关节熔化区,因此抑制AA6061对热裂化的内在敏感性。然而,用不同的合金焊接作为填充材料始终是融合焊接材料之间的折衷,并且接受稀释的熔化区的性质的缺点。在这项工作中,将低体积分数的碳化钛纳米铝蛋白掺入AA6061中以制造填充棒。制造的AA6061-TIC填充材料还用于TIG焊接AA6061基材。通过使用纳米处理填料产生的焊缝不含裂缝,并且在焊接和后焊接热处理条件下表现出异常的机械性能。新的纳米纳米纳米AA6061填充材料为广泛应用提供了极大的潜力。

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