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Microstructural Study of Laser Welds AI6056-AS12 in Relation with Hot Tearing

机译:激光焊接AI6056-AS12与热撕裂相关的微观结构研究

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T shape welds of 2.5 mm thick sheets of the Al-Mg-Si-Cu alloy 6056 were produced using two 3kW Nd:YAG lasers. The filler wire used was Al-12%wt Si. The welds were realised in the T4 temper. Optical observations revealed a very fine dendritic structure (D.A.S.=3μm) in the fusion zone with a grain size of about 100μm. The composition of the interdendritic space is rich in all alloying elements and multiphased. The dendrites interior still contain sufficient solute to enable precipitation hardening during a post-welding heat treatment. This precipitation has been characterised by transmission electron microscopy. The grain boundaries of the base material close to the weld nugget appear to be affected by the welding process. By a combination of optical and TEM observations, we have demonstrated that grain boundary liquation occurred. Microhardness tests reveal a large difference between the fusion zone and the base metal. After a post welding heat treatment, hardness increases not only in the base metal but also in the fusion zone due to precipitation hardening. The narrow heat affected zone which can be observed just after welding disappears after a post welding heat treatment.
机译:使用两种3kW ND:YAG激光器生产2.5mm厚的Al-Mg-Si-Cu合金6056的T形焊缝。使用的填充丝是Al-12%wt Si。焊缝在T4脾气中实现。光学观察在融合区中揭示了一种非常细的树突结构(D.a.S. =3μm),晶粒尺寸为约100μm。在所有合金元素中富含蛋白质空间的组成和多相。树突内部仍然含有足够的溶质,以在焊后热处理期间能够沉淀硬化。该沉淀的特征在于透射电子显微镜。靠近焊缝扣除的基材的晶界似乎受到焊接过程的影响。通过光学和温度观察的组合,我们已经证明了晶界发生。微硬度测试揭示了融合区和基础金属之间的巨大差异。在焊接后热处理后,硬度不仅在基础金属中增加,而且由于沉淀硬化而在融合区中增加。在焊接后热处理后,焊接后可以观察到的窄热影响区域。

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