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Effect of Solution Treatment on Precipitation Behaviors Age Hardening Response and Creep Properties of Elektron21 Alloy Reinforced by AlN Nanoparticles

机译:固溶处理对AlN纳米颗粒增强Elektron21合金的析出行为时效响应和蠕变性能的影响

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摘要

In the present study, the solution and ageing treatments behavior of Mg-RE-Zr-Zn alloy (Elektron21) and its nano-AlN reinforced nanocomposites have been evaluated. The properties of the thermal-treated materials were investigated in terms of Vickers hardness, the area fraction of precipitates, microstructure and phase composition. The solution treatments were performed by treating at 520 °C, 550 °C and 580 °C in argon atmosphere. The outcomes show that the hardness of the solutionized alloys was slightly affected by the solution temperature. X-ray diffraction and image analysis revealed that the complete dissolution of precipitates was not possible, neither for Elektron21 (El21) nor for its AlN containing nanocomposites. The ageing treatment of El21 led to a significant improvement in hardness after 20 h, while for longer times, it progressively decreased. The effect of ageing on the hardness of El21–AlN composites was found to be much less than this effect on the hardness of the host alloy. Electron backscatter diffraction (EBSD) analysis of El21 and El21–1%AlN after solution treatment confirm the random orientation of grains with a typical texture of random distribution. The as-cast creep results showed that the incorporation of nanoparticles could effectively improve the creep properties, while the results after solution treatment at 520 °C for 12 h followed by ageing treatment at 200 °C for 20 h confirmed that the minimum creep rate of T6-El21 was almost equal to the as-cast El21–AlN.
机译:在本研究中,已评估了Mg-RE-Zr-Zn合金(Elektron21)及其纳米AlN增强纳米复合材料的固溶和时效处理行为。根据维氏硬度,沉淀物的面积分数,微观结构和相组成研究了热处理材料的性能。通过在氩气氛中在520℃,550℃和580℃下进行处理来进行固溶处理。结果表明,固溶温度对固溶合金的硬度影响很小。 X射线衍射和图像分析表明,对于Elektron21(El21)或其含AlN的纳米复合材料,沉淀物不可能完全溶解。 El21的时效处理导致20小时后硬度显着提高,而长时间后,它逐渐降低。发现时效对El21-AlN复合材料硬度的影响远小于对主体合金硬度的影响。固溶处理后的El21和El21–1%AlN的电子背散射衍射(EBSD)分析证实了具有典型随机分布纹理的晶粒的随机取向。铸态蠕变结果表明,纳米粒子的掺入可以有效改善蠕变性能,而在520°C固溶处理12 h然后在200°C进行时效处理20 h的结果证实了最小蠕变速率为T6-El21几乎等于铸态的El21-AlN。

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