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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Studies on partially melted zone in aluminium-copper alloy welds-effect of techniques and prior thermal temper
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Studies on partially melted zone in aluminium-copper alloy welds-effect of techniques and prior thermal temper

机译:铝铜合金焊缝局部熔化区的研究-工艺效果和预热温度

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摘要

Partially melted zone (PMZ) of aluminium alloy welds is an important region and requires careful attention. This is mainly because PMZ in these materials is weak link in the weldments and is significantly affected by welding parameters. Microstructure changes in PMZ are related not only to welding heat input and techniques, but also depend on the initial thermal history of alloy (for example, whether it is in T6 or T87 condition etc.). Interestingly, not many detailed studies were available in this respect. In the present work, effect of prior thermal temper and welding techniques mainly continuous and pulsed current gas tungsten arc welding (GTAW) on the PMZ behaviour of AA2219 alloy was studied. Susceptibility to liquation was found to be high in T6 temper of AA2219 alloy than in T87. Pulsed current technique was found to improve the resistance to the susceptibility to liquation in PMZ.
机译:铝合金焊缝的部分熔化区(PMZ)是重要的区域,需要仔细注意。这主要是因为这些材料中的PMZ是焊件中的薄弱环节,并且受焊接参数的影响很大。 PMZ的微观结构变化不仅与焊接热输入和工艺有关,而且还取决于合金的初始热历史(例如,处于T6或T87条件等)。有趣的是,在这方面没有许多详细的研究可用。在本工作中,研究了先有的温度回火和焊接技术(主要是连续和脉冲电流气体钨极电弧焊(GTAW))对AA2219合金的PMZ行为的影响。发现AA2219合金的T6回火比T87对液化的敏感性高。发现脉冲电流技术可以提高对PMZ液化敏感性的抵抗力。

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