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The mechanical properties of an aluminum alloy by plasma-based ion implantation and solution-aging treatment

机译:等离子体离子注入固溶时效处理铝合金的力学性能

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The age-strengthening 2024 aluminum alloy was modified by a combination of plasma-based ion implantation (PBII) and solution-aging treatments. The depth profiles of the implanted layer were investigated by X-ray photoelectron spectroscopy (XPS). The structure was studied by glancing angle X-ray diffraction (GXRD). The variation of microhardness with the indenting depth was measured by a nanoindenter. The wear test was carried on with a pin-on-disk wear tester. The results revealed that when the aluminum alloys were implanted with nitrogen at the solution temperature, then quenched in the vacuum chamber followed by an artificial aging treatment for an appropriate time, the amount of AlN precipitates by the combined treatment were more than that of the specimen implanted at ambient temperature. Optimum surface mechanical properties were obtained. The surface hardness was increased and the weight loss in a wear test decreased too.
机译:通过结合基于等离子体的离子注入(PBII)和固溶时效处理,对增强了强度的2024铝合金进行了改性。通过X射线光电子能谱(XPS)研究了注入层的深度轮廓。通过掠角X射线衍射(GXRD)研究了该结构。显微硬度随压痕深度的变化通过纳米压头测量。磨损测试是通过针盘式磨损测试仪进行的。结果表明,当铝合金在固溶温度下注入氮,然后在真空室中淬火,然后进行适当的时效人工时效处理时,经组合处理的AlN析出物的数量要多于试样的数量。在室温下植入。获得了最佳的表面机械性能。表面硬度增加,磨损试验中的重量损失也减少。

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