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Effect of Severe Plastic Deformation on the Structure and Properties of the Aluminum Alloy System Al-Cu-Mg

机译:严重塑性变形对铝合金系统Al-Cu-Mg结构和性能的影响

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The structure and properties of discs from cast coarse-grained D16 alloy have been investigated with the help of optical metallography and transmission electron microscopy, after the traditional heat treatment (HT) modes or subjected to high pressure torsion (HPT) under pressure in 6 GPa at room temperature. Standard HT modes included: T4 (hardening 495°C + natural aging at room temperature for 5 days) and T6 (hardening 495°C + artificial aging at 185°C for 10 hours). It is shown that after HT of alloy D16 according to modes T6 and T4, the sizes of the structural elements, compared with the original, decreased by about 4,8 times and the microhardness increased by 1,6 times. It is shown that after one or ten revolutions of HPT in D16 alloy the sizes of structural elements, in comparison with initial, decreased by 393 and 899 times, and microhardness increased by 2,4 and 2,9 times, respectively. Detection of hardening hard, brittle and high-alloy copper γ2- phases (CU9Al4) indicates the passage in the HPT process of the decomposition of a supersaturated solid solution (dynamic aging) in the planes of a local shift.
机译:在光学金属塑视和透射电子显微镜的帮助下,在传统的热处理(HT)模式或在6GPa中的压力下进行高压扭转(HPT)的高压扭转(HPT),研究了来自铸造粗粒的D16合金的盘的结构和性质。在室温下。标准HT模式包括:T4(室温下硬化495℃+天然老化5天)和T6(硬化495℃+人工老化在185℃下10小时)。结果表明,在根据模式T6和T4的合金D16的HT之后,与原始的结构元件的尺寸减小约4,8次,并且微硬度增加了1,6倍。结果表明,在D16合金中的一个或十转的HPT中,与初始的结构元素的尺寸相比,减少了393和899次,并且微硬度分别增加了2,4和2,9次。硬化硬化,脆性和高合金铜γ2-阶段(Cu9Al4)的检测表明,在局部偏移的平面中的超饱和固溶体(动态老化)分解的HPT过程中的通道。

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