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Effects of Ag addition on the microstructure and thermal stability of 6156 alloy

机译:Ag的添加对6156合金组织和热稳定性的影响

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摘要

The effects of Ag addition on the microstructure and thermal stability of 6156 Al-Mg-Si-Cu alloy were investigated by means of hardness measurement, tensile tests, differential scanning calorimetry, and transmission electron microscopy. The results showed that addition of small amount of Ag to 6156 alloy did not change the precipitation sequence mainly β″ and Q′ strengthening phase but slightly accelerated the age-hardening rate and increased peak hardness at the same aging condition. The tensile properties enhanced about 30 MPa at the room temperature or thermal exposure at lower temperature (<100 °C). With the exposed temperature and time increased to 150 °C for 1000 h, almost no difference between the Ag-containing and Ag-free alloys. When exposed at 200 °C, the tensile strength of Ag-containing alloy became lower than that of Ag-free alloy because of the coarsening precipitations in matrix and boundary observed by TEM observed. For both alloys, thermal exposure at temperatures 100 °C for long time periods had no significant effect on tensile properties. Loss in strength was small and large with prolonging the exposure time at 150 and 200 °C, respectively.
机译:通过硬度测量,拉伸试验,差示扫描量热法和透射电子显微镜研究了添加Ag对6156 Al-Mg-Si-Cu合金组织和热稳定性的影响。结果表明,在6156合金中添加少量的Ag不会改变以β″和Q′强化相为主的析出顺序,但在相同时效条件下,时效硬化速率略有提高,峰值硬度增加。在室温下或在较低温度(<100°C)下进行热暴露时,拉伸性能提高了约30 MPa。随着暴露的温度和时间增加到150°C,持续1000 h,含银和无银合金之间几乎没有差异。当在200°C下暴露时,含银合金的拉伸强度变得比无银合金低,这是因为通过TEM观察到的基体和边界中的析出变粗。对于这两种合金,长时间在100°C的温度下进行热暴露对拉伸性能均无明显影响。强度损失小而大,分别延长了在150和200°C下的暴露时间。

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