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Characterization of Thermally Treated Gas-Atomized Al 5056 Powder

机译:热处理气体雾化Al 5056粉末的表征

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摘要

Aluminum 5056 is a work-hardenable alloy known for its corrosion resistance with new applications in additive manufacturing. A good understanding of the secondary phases in Al 5056 powders is important for understanding the properties of the final parts. In this study, the effects of different thermal treatments on the microstructure of Al 5056 powder were studied. Thermodynamic models were used to guide the interpretation of the microstructure as a function of thermal treatment, providing insight into the stability of different possible phases present in the alloy. Through the use of transmission electron microscopy (TEM) and energy-dispersive X-ray spectroscopy (EDS), combined with thermodynamic modeling, a greater understanding of the internal microstructure of Al 5056 powder has been achieved in both the as-atomized and thermally treated conditions. Evidence of natural aging within these powders was observed, which speaks to the shelf-life of these powders and the importance of proper treatment and storage to maintain consistent results.
机译:铝5056是一种用于其耐腐蚀性的工作淬耐合金,具有添加剂制造中的新应用。良好地理解Al 5056粉末中的二次阶段对于了解最终部分的性质是重要的。在该研究中,研究了不同热处理对Al 5056粉末微观结构的影响。热力学模型用于指导微观结构的解释作为热处理的功能,提供了对合金中存在的不同可能相的稳定性的洞察力。通过使用透射电子显微镜(TEM)和能量分散X射线光谱(EDS),结合热力学建模,在雾化和热处理的情况下,在Al 5056粉末的内部微观结构上更大了解使适应。观察到这些粉末内的自然老化的证据,这与这些粉末的保质期和适当的治疗和储存的重要性谈到维持一致的结果。

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