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Mechanical and corrosion resistance properties of AA7075-T6 sub-zero formed sheets

机译:AA7075-T6子零形成床单的机械和耐腐蚀性

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摘要

The poor formability of 7xxx series aluminium alloys represents the major limit to their actual use for automotive and aerospace applications. In the present study, the forming temperature effect on the mechanical, corrosion and anodization behaviours of the AA7075-T6 alloy is investigated. To this purpose, tensile tests at different temperatures, ranging from -100 to 300 degrees C, were carried out at different rolling directions. A 6.6% increase of the ultimate tensile strength and a 28.6% increase of the uniform elongation were registered for the specimens deformed at the lowest temperature compared to highest ones. Further, the corrosion resistance of specimens deformed at ultimate tensile strength before and after anodization was increased of 85% and 95%, respectively, compared to the specimens deformed at 300 degrees C. It was demonstrated that high deformation temperatures led to the coalescence of particles and precipitates as well as the decrease of dislocation density, which, in turn, decreased the mechanical and corrosion performances. On the contrary, the deformation temperature of -100 degrees C was found to be the ideal one able to shorten the manufacturing process chain and improve material formability and durability during its in-service life.
机译:7xxx系列铝合金的可成形性差是限制其实际用于汽车和航空航天应用的主要因素。在本研究中,研究了成型温度对AA7075-T6合金的机械、腐蚀和阳极氧化行为的影响。为此,在不同的轧制方向进行了不同温度(从-100到300摄氏度)下的拉伸试验。与最高温度相比,在最低温度下变形的试样的极限抗拉强度增加了6.6%,均匀伸长率增加了28.6%。此外,与在300℃下变形的试样相比,阳极氧化前后在极限抗拉强度下变形的试样的耐腐蚀性分别提高了85%和95%。结果表明,高变形温度导致颗粒和沉淀物的聚结,以及位错密度的降低,这反过来,降低了机械性能和腐蚀性能。相反,-100℃的变形温度被认为是缩短制造工艺链、提高材料在使用寿命期间的成形性和耐久性的理想温度。

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