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The influence of artificial aging on the microstructure, mechanical properties, corrosion, and environmental cracking susceptibility of a 7075 friction-stir-weld

机译:人工时效对7075搅拌摩擦焊的组织,力学性能,腐蚀和环境开裂敏感性的影响

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摘要

The influence of overaging to the T7451 temper on the microstructure, the mechanical properties, and the corrosion susceptibility of friction-stir-welded 7075 aluminum alloy was investigated by means of transmission electron microscope (TEM), SEM investigations, constant extension rate tests (CERT), alternate immersion tests, and potentiodynamic scans. The overaging that occurs during welding within the heat-affected zones of the friction-stir-welded 7075-O tempered plates promotes a slight formation of intragranular and grain boundary precipitates and increases the mechanical as well as the corrosion resistance properties as compared to the T7451 welded plates. The "double" overaging treatment, consisting of the T7451 temper and the thermal transient experienced by the heat-affected zones of the 7075-T7451 welded plates, increases the size of the intragranular and the grain boundary precipitates as well as the precipitate-free zones. These facts decrease the mechanical and corrosion properties of the 7075-T7451 weld. The T7451 thermal treatment applied after the welding of the 7075-O plates promotes the high presence of small precipitates and reduces the size of the precipitate-free zones. This fact increases the general corrosion resistance, but decreases the mechanical properties. Therefore, the corrosion as well as the mechanical properties are greatly correlated with minute changes in the microstructure, which can arise by short-term heat exposure as for instance during welding. It was also found that the environmental susceptibility measured by means of CERTs may be influenced by "solution-strengthening" corrosion mechanisms which increase the strain. This fact is present in weld microzones particularly susceptible to corrosion.
机译:通过透射电子显微镜(TEM),SEM研究,恒定延伸率试验(CERT)研究了过时效对T7451回火对摩擦搅拌焊接7075铝合金的组织,力学性能和腐蚀敏感性的影响。 ),替代的浸入测试和电位动力学扫描。与T7451相比,在搅拌摩擦焊接的7075-O回火板的热影响区内进行焊接时发生的过时效促进了晶粒内和晶界沉淀物的轻微形成,并提高了机械性能和耐腐蚀性焊接板。 “双重”过时效处理包括T7451的回火和7075-T7451焊接板的热影响区所经历的热瞬态,增加了晶粒内和晶界沉淀以及无沉淀区的尺寸。 。这些事实降低了7075-T7451焊缝的机械性能和腐蚀性能。在7075-O板焊接后进行的T7451热处理促进了高析出物的出现,并减小了无析出物区域的大小。这个事实增加了一般的耐腐蚀性,但是降低了机械性能。因此,腐蚀以及机械性能与微观结构的微小变化密切相关,微观变化可能是由于短期的热暴露而产生的,例如在焊接过程中。还发现通过CERT测量的环境敏感性可能受到“溶液强化”腐蚀机制的影响,该机制增加了应变。这个事实存在于特别容易腐蚀的焊缝微区中。

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