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Functional Gradation in Precipitation Hardenable AA7075 Alloy by Differential Cooling Strategies

机译:通过差动冷却策略沉淀可硬化AA7075合金的功能灰度

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Inspired by steel forming strategies, this study focuses on the effect of differential cooling on mechanical properties and precipitation kinetics during hot stamping of high strength AA7075 alloy. For this aim, different forming strategies were performed using segmented and differentially heated forming tools to provide locally tailored microstructures. Upon processing, uniaxial tensile tests and hardness measurements were used to characterize the mechanical properties after the aging treatment. Microstructure investigations were conducted to examine the strengthening mechanisms using the electron channeling contrast imaging (ECCI) technique in a scanning electron microscope (SEM). Based on the obtained results, it can be deduced that the tool temperatures play a key role in influencing the mechanical properties. Lower tool temperatures result in higher material strength and higher tool temperatures in lower mechanical properties. By changing the cooling rate with the use of differently heated forming tools, the mechanical properties can be controlled. Microstructure investigations revealed the formation of very fine and homogeneously distributed particles at cooled zones, which were associated with elevated mechanical properties, due to the suppression of second phase particle formation during cooling. In contrast, coarse particles were observed at lower cooling rates, explaining the lower material strength found in these zones.
机译:这项研究引发了钢制成型策略,专注于在高强度AA7075合金的热冲压过程中差动冷却对机械性能和降水动力学的影响。为此目的,使用分段和差动加热的成形工具进行不同的形成策略,以提供局部定制的微结构。在加工后,使用单轴拉伸试验和硬度测量来表征老化处理后的机械性能。进行微观结构研究以在扫描电子显微镜(SEM)中使用电子通道对比度成像(ECCI)技术来检查强化机制。基于所得的结果,可以推断出刀具温度在影响机械性能方面发挥着关键作用。较低的工具温度导致更高的材料强度和更高的机械性能温度。通过使用不同加热的成形工具改变冷却速率,可以控制机械性能。微观结构研究表明,由于在冷却过程中抑制第二相粒子形成,在冷却区域中形成非常精细和均匀分布的颗粒。相反,以较低的冷却速率观察到粗颗粒,解释这些区域中发现的较低的材料强度。

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