首页> 外文期刊>International Journal of Metalcasting: Leading the Transfer of Research and Technology for the Global Metalcasting Industry >EFFECT OF AGING CONDITIONS ON PRECIPITATION HARDENING IN Al-Si-Mg AND Al-Si-Cu-Mg ALLOYS
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EFFECT OF AGING CONDITIONS ON PRECIPITATION HARDENING IN Al-Si-Mg AND Al-Si-Cu-Mg ALLOYS

机译:老化条件对Al-Si-Mg和Al-Si-Cu-Mg合金沉淀硬化的影响

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摘要

The present study was carried out on a series of heat-treatable aluminum-based alloys, the objective being to determine the effect of aging time and temperature on the precipitation of Mg2Si and Al2Cu in these alloys. Tensile test bars (dendrite arm spacing similar to 24 lm) were solutionized for either 5 or 12 h at 540 degrees C (Al-Si-Mg alloys) or 495 degrees C (Al-Si-Mg-Cu alloys), followed by quenching in warm water (60 degrees C). Subsequently, the quenched samples were aged at 160 and 220 degrees C for times up to 200 h. Microstructural assessment was performed using thermal analysis technique, image analysis and field emission scanning electron microscopy. All heat-treated samples were pulled to fracture at room temperature. The results show that the presence of Sr delays the precipitation of Mg2Si or Al2Cu during the aging process. The precipitation of Mg2Si occurs in the form of spherical particles-rather than cuboid particles, thin platelets or short rods-regardless of the aging time or aging temperature. Particle coarsening takes place by the dissolution of some small particles and re-deposition onto larger ones. The shape and size of the precipitated Al2Cu particles are found to be strongly dependent on the aging conditions. The tensile behavior of Sr-modified 356 alloy revealed a wavy-type nature with respect to aging time instead of a single peak, due to variation in the size and distribution of the precipitates over several stages. The ultimate tensile strengthductility relationships have been presented in the form of Q-charts reflecting the effect of aging conditions and melt treatment, i.e., modification with Sr on the alloy performance.
机译:本研究在一系列热处理的铝基合金上进行,目的是确定老化时间和温度对这些合金中Mg2Si和Al2Cu沉淀的影响。在540℃(Al-Si-Mg合金)或495℃(Al-Si-Mg-Cu合金)中,将拉伸试验杆(类似于24Lm的树突式臂间距类似于24 Lm),然后溶液溶液,然后淬火在温水(60℃)。随后,淬火样品在160和220℃下老化至200小时。使用热分析技术,图像分析和现场发射扫描电子显微镜进行微结构评估。将所有热处理样品拉到室温下裂缝。结果表明,在老化过程中,SR的存在延迟了Mg2SI或Al2Cu的沉淀。 Mg2Si的沉淀以球形颗粒的形式 - 而不是长方体颗粒,薄血小板或短杆 - 无论老化时间还是老化温度如何。通过溶解一些小颗粒并再沉积到较大的粒子上进行颗粒粗化。发现沉淀的Al2Cu颗粒的形状和尺寸强烈取决于老化条件。由于沉淀物的尺寸和分布在几个阶段的尺寸和分布的变化,SR改性356合金的拉伸行为揭示了关于老化时间而不是单一峰的波浪型性质。最终拉伸强度的关系已经以Q-图表的形式提出,反映了老化条件和熔融处理的效果,即用SR对合金性能进行改性。

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