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Weibull Statistical Analysis of Strength Fluctuation for Failure Prediction and Structural Durability of Friction Stir Welded Al–Cu Dissimilar Joints Correlated to Metallurgical Bonded Characteristics

机译:与冶金结合特性相关的搅拌摩擦焊接铝铜异种接头失效预测和结构耐久性强度波动的威布尔统计分析

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摘要

In this paper, dissimilar Al–Cu joints of AA1050H/C1100-Cu, AA6061-T6/C1100-Cu, and AA1050H/C2600-brass are successfully welded by a friction stir welding (FSW) process. The aim of the present study is not only to examine the tensile strength, but also to investigate the reliability, durability, and failure behaviors of joints as correlated with the metallurgical bonded microstructures of varied Al–Cu joints. Experimental evidence confirms that good welding quality for an FSW Al–Cu dissimilar joint is obtained when pure Cu and brass plates are positioned at the advancing side. Cross-sectional microstructures reveal that the AA6061-T6/C1100-Cu joint exhibits an extensive metallurgical bonded region with significant onion rings in the welding zone, whereas the AA1050H/C2600-brass joint generally displays a clear mechanical kissing bonded boundary at the joint interface. Al2Cu, Al4Cu9, and γ-Cu5Zn8 are major intermetallic compounds (IMCs) that are formed within the metallurgical bonded welding zone. The Weibull model provides a statistical method for assessing the failure mechanism of FSW Al–Cu joints. Better welding reliability and tensile properties with ductile dimpled ruptures are obtained for the Al–Cu joints with a typical metallurgical bonded zone. However, a mechanical kissing bonded interface and thick interfacial IMCs result in the deterioration of tensile strength with a brittle fracture and a rapid increase in the failure probability of Al–Cu joints.
机译:在本文中,通过搅拌摩擦焊(FSW)成功焊接了AA1050H / C1100-Cu,AA6061-T6 / C1100-Cu和AA1050H / C2600-黄铜的异种Al-Cu接头。本研究的目的不仅是检查抗拉强度,而且还研究与各种Al-Cu接头的冶金结合微观结构相关的接头的可靠性,耐久性和破坏行为。实验证据证实,当纯铜和黄铜板位于前进侧时,FSW Al-Cu异种接头可获得良好的焊接质量。横截面的微观结构表明,AA6061-T6 / C1100-Cu接头在焊接区具有广阔的冶金结合区,并带有明显的洋葱环,而AA1050H / C2600-黄铜接头通常在接头界面处显示出清晰的机械吻合结合边界。 Al2Cu,Al4Cu9和γ-Cu5Zn8是在冶金结合焊接区内形成的主要金属间化合物(IMC)。 Weibull模型为评估FSW Al-Cu接头的失效机理提供了一种统计方法。具有典型冶金结合区的Al-Cu接头具有更好的焊接可靠性和具有延性凹痕断裂的拉伸性能。但是,机械接吻结合界面和较厚的界面IMC会导致抗拉强度降低,并产生脆性断裂,并且Al-Cu接头的失效概率会迅速增加。

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