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Influence of Solution Treatment on Microstructure and Quench Crackingin a Water-Quenched Aluminium Alloy 7150

机译:溶液处理对微观结构和淬火裂纹的影响水淬铝合金7150

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In this work, the influence of multi-step solution (MSS) treatments on the constituent particle dissolution, overheating and associated quench cracking behaviour in room temperature water-quenched 7150 Al alloy has been investigated. For comparison, the microstructure and quench cracking behaviour of single step solution treated samples water-quenched from 505°C were also investigated. Based on optical microscopy of differently quenched samples, the quench cracking mode and the influence of overheating of constituents on the quench cracking behaviour have been demonstrated. The results reveal that the constituent particles can be effectively dissolved in the MSS-505°C samples. When the quench temperature of MSS-505°C samples is equal to or higher than 485°C , macro quench cracks can be clearly observed. Moreover, the density and length of the quench cracks increase with increasing quench temperature. Etched microstructures indicate that the quench crack propagation mode is intergranular. However, for samples directly heated to 505°C , typical overheating can be observed at the triple junctions and these regions preferentially act as crack propagation routes.
机译:在这项工作中,研究了在室温下水淬灭绝的7150Al合金中对组成颗粒溶解,过热和相关的淬火裂化行为的多步溶液(MSS)处理的影响。为了比较,还研究了从505℃水淬水的单步溶液处理样品的微观结构和淬火裂纹行为。基于不同淬火样品的光学显微镜,已经证明了淬火裂化模式和对淬火裂化行为上的成分过热的影响。结果表明,组分颗粒可以有效地溶解在MS-505℃样品中。当MS-505°C样品的淬火温度等于或高于485℃时,可以清楚地观察到宏骤冷裂纹。此外,淬火裂纹的密度和长度随着淬火温度的增加而增加。蚀刻的微结构表明淬火裂纹传播模式是晶间的。然而,对于直接加热至505℃的样品,可以在三角点观察到典型的过热,并且这些区域优先充当裂纹传播路线。

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