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Natural Aging Effects on the Solutionizing Heat Treatment Process of the A6060 Al Alloy As-Cast Billets for Profile Production

机译:自然时效对型材生产A6060铝合金铸坯固溶化热处理工艺的影响

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Recently results were presented for an R & D program for handling the as-cast billets of an Al-Si-Mg A6060 Al alloy at the solutionizing heat treatment temperature. A reduction in the solutionizing temperature of the as-cast billets from 585℃ to 540℃ was found. This leads to substantial energy savings without lowering the quality of the final commercial Al profiles. The alloy was treated from the microstructural point of view as an Aluminum Metal-Matrix Composite (Al-MMC). Strengthening of the Al matrix grains during the process was quantified and measured by micro-Vickers hardness testing. A possible application of this is to apply the suggested lower temperature solutionizing process to billets stockpiled in the factory for some months. The alloy undergoes natural aging, a physical process at ambient temperature that alters its microstructural features. Does this aging affect the quality of the lower temperature solutionizing treated profiles? The effect of the natural aging by micro-Vickers hardness testing on some of the same samples of our original work stockpiled in our lab for 10 months was investigated. We applied, further, the Image-Pro Plus image processing software on them in an effort to collect microstructural data and compared them to values taken 10 months earlier. Also we tried an interconnection between the two experimental processes treating the alloy as an Al-MMC.
机译:最近的研究结果已提交给在固溶热处理温度下处理Al-Si-Mg A6060铝合金铸坯的研发计划。发现铸坯的固溶温度从585℃降低到540℃。这导致可观的能源节省,而不降低最终的商业铝型材的质量。从微观结构的角度来看,该合金被视为铝金属基复合材料(Al-MMC)。通过显微维氏硬度测试定量和测量了过程中铝基体晶粒的强度。一种可能的应用是将建议的低温固溶工艺应用于工厂中储存数月的钢坯。合金会经历自然时效,这是在环境温度下改变其微观结构特征的物理过程。这种老化是否会影响低温固溶处理型材的质量?通过显微维氏硬度测试对我们实验室中存放的10个月的原始工作的某些相同样本的自然老化的影响进行了研究。我们进一步在它们上应用了Image-Pro Plus图像处理软件,以收集微观结构数据并将其与10个月前获得的值进行比较。我们还尝试了将合金视为Al-MMC的两个实验过程之间的互连。

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