The effect of three types of heat treatment on the hardness and corrosion resistance of Al 2014 alloy

Ansari Shadab Azhar Nazeer Iqbal, M Abdur Rahman, Hussain H. Naveed
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Abstract

Al 2014 is a high-strength aluminum alloy widely used in the aerospace and automotive industries for its mechanical strength. This research examines the effects of three heat treatment processes—retrogression and re-aging (RRA), T6 standard aging, and a modified RRA with high-temperature pre-aging—on the hardness and corrosion resistance of Al 2014. Polarization studies using potentiodynamic electrochemical methods in a 3.5 wt% sodium chloride solution were conducted to evaluate the corrosion resistance. The results showed that heat treatment, which causes precipitation hardening, shifted the corrosion potential (E) toward a more noble direction. The formation of Al2Cu precipitates is associated with improved corrosion resistance. Additionally, samples treated with the T6 process exhibited a higher corrosion current density compared to untreated Al 2014 alloy samples, indicating superior corrosion resistance. Analysis of corroded surfaces using scanning electron microscopy (SEM) with energy-dispersive X-ray spectroscopy (EDS) showed evidence of general and pitting corrosion, with distinct patterns among the three heat treatment processes. A comparison of the results revealed that the T6 standard aging process provided the best combination of hardness and corrosion resistance. This was likely due to the formation of stable precipitates during aging. The results also indicated that the RRA process showed good performance, suggesting it is a viable alternative when a balance between hardness and toughness is required. The modified RRA with high-temperature pre-aging resulted in lower performance, likely due to overaging, which reduced hardness and corrosion resistance. These findings highlight the significance of heat treatment in improving the corrosion resistance of Al 2014 alloy. This suggests that particular processes can enhance the alloy's durability in corrosive environments, potentially leading to a longer lifespan and reduced maintenance costs. The T6 standard aging process offers the best balance of enhanced hardness and corrosion resistance for Al 2014 alloy, making it ideal for extending lifespan and reducing maintenance costs in corrosive environments. Careful selection of heat treatment is crucial based on specific alloy performance requirements.

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三种热处理方式对Al 2014合金硬度和耐蚀性的影响
Al 2014是一种高强度铝合金,因其机械强度高,广泛应用于航空航天和汽车工业。本研究考察了三种热处理工艺——回归再时效(RRA)、T6标准时效和高温预时效改性RRA对Al 2014硬度和耐蚀性的影响。采用动电位电化学方法在3.5 wt%氯化钠溶液中进行极化研究,以评价其耐蚀性。结果表明,热处理引起沉淀硬化,使腐蚀电位(E)向更高贵的方向移动。Al2Cu析出相的形成与耐蚀性的提高有关。此外,与未经处理的Al 2014合金样品相比,经过T6工艺处理的样品显示出更高的腐蚀电流密度,表明具有更好的耐腐蚀性。利用扫描电子显微镜(SEM)和能量色散x射线能谱(EDS)对腐蚀表面进行分析,发现腐蚀表面存在一般腐蚀和点蚀,三种热处理工艺之间存在明显的腐蚀模式。结果表明,T6标准时效工艺能提供最佳的硬度和耐蚀性组合。这可能是由于在老化过程中形成了稳定的沉淀物。结果还表明,RRA工艺表现出良好的性能,表明当需要在硬度和韧性之间取得平衡时,RRA工艺是一种可行的替代方案。经高温预时效处理的改性RRA,可能由于过时效而导致性能降低,硬度和耐腐蚀性降低。这些发现凸显了热处理对提高Al 2014合金耐蚀性的重要意义。这表明,特定的工艺可以提高合金在腐蚀性环境中的耐久性,从而有可能延长使用寿命并降低维护成本。T6标准时效工艺为Al 2014合金提供了增强硬度和耐腐蚀性的最佳平衡,使其成为延长寿命和降低腐蚀环境中维护成本的理想选择。根据特定的合金性能要求,仔细选择热处理是至关重要的。
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