Effect of Artificial Aging Temperature on Mechanical Properties of 6061 Aluminum Alloy

Mukesh Kumar, M. M. Baloch, M. Abro, S. A. Memon, A. Chandio
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引用次数: 6

Abstract

Aluminum alloys have been attracted by several engineering sectors due to their excellent strengthweight ratio and corrosion resistant properties. These are categorized into 1, 2, 3, 4, 5, 6, 7and 8xxx on the basis of alloying elements. Among these 6xxx series contains aluminum–magnesium–silicon as alloying elements and are widely used in extruded products and automotive body panels. The major advantages of these alloys are good corrosion resistance, medium strength, low cost, age hardening response no yield point phenomenon and Ludering. 6xxx series alloys generally have lower formability than other aluminum alloys which restrict their utilization for wide applications. Keeping in view of the shortcomings in the set of mechanical properties of 6xxx series the efforts were made to improve the tensile strength and toughness properties through age hardening. In present study heat treatment cycles were studied for 6061 aluminum alloy. Three different age hardening temperatures 160, 200 and 240oC were selected. The obtained results showed that 17.26, 7.69, and 10.51% improvement in tensile strength, toughness and hardness respectively was achieved with solution treatment at 380oC followed by an aging 240oC. Microstructural study revealed that substantial improvements in the mechanical properties of 6061 aluminum alloy under heat treatment were achieved due to precipitation of Mg2Si secondary phase.
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人工时效温度对6061铝合金力学性能的影响
铝合金因其优异的强度重量比和耐腐蚀性能而受到工程领域的广泛关注。这些根据合金元素分为1、2、3、4、5、6、7和8xxx。其中6xxx系列以铝镁硅为合金元素,广泛应用于挤压制品和汽车车身面板。6xxx系列合金的主要优点是耐腐蚀性能好、强度中等、成本低、时效硬化反应快、无屈服点现象和鲁德林现象。6xxx系列合金的成形性一般低于其他铝合金,这限制了其广泛应用。针对6xxx系列在力学性能方面存在的不足,通过时效硬化的方法提高其抗拉强度和韧性。本文对6061铝合金的热处理循环进行了研究。选择了160、200和240℃三种不同的时效硬化温度。结果表明,在380℃固溶后时效240℃,合金的抗拉强度、韧性和硬度分别提高17.26%、7.69%和10.51%。显微组织研究表明,热处理后6061铝合金的力学性能由于Mg2Si次生相的析出而得到了显著改善。
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