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首页> 外文期刊>Materials Science and Engineering >The influence of natural aging and repeated solution annealing on microstructure and mechanical properties of hot extruded alloys Al 7020 and Al 7175
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The influence of natural aging and repeated solution annealing on microstructure and mechanical properties of hot extruded alloys Al 7020 and Al 7175

机译:自然时效和固溶反复退火对热挤压铝合金7020和7175的组织和力学性能的影响

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摘要

This investigation focusses on the influences of natural aging and repeated solution annealing on the micro-structure and the mechanical properties of two different 7xxx Al-alloys. The alloys 7020 and 7175 were hot extruded and naturally aged at room temperature for 18 month. The strands were then analyzed in naturally aged condition and after three different repeated solution annealing processes. In a third step they were peak aged and then analyzed regarding their microstructure and mechanical properties. For the analysis of the microstructure a combination of optical, scanning and transmission electron microscopy as well as electron backscatter diffraction has been used. The mechanical properties were measured by compression and tensile tests. Several results can be concluded from these investigations: 1. The repeated solution annealing is affecting the grain morphology at the surface of the strands. 2. In alloy 7175 Al_2CuMg and Al_(12)Mg_2Cr_2 particles were formed during the repeated solution annealing processes. 3. Specimens in the repeated solution annealed and subsequent peak aged condition exhibit lower tensile strength values than the naturally aged and subsequent peak aged alloys. 4. Neither repeated solution annealing nor natural aging is deteriorating the elongation at fracture of the peak aged material, which is a great advantage for the industry.
机译:这项研究集中于自然时效和反复固溶退火对两种不同的7xxx铝合金的微观结构和机械性能的影响。热挤压7020和7175合金,并在室温下自然时效18个月。然后,在自然老化条件下以及经过三个不同的重复固溶退火过程后,对钢绞线进行了分析。在第三步中,对它们进行峰值时效,然后对其微观结构和力学性能进行分析。为了分析微观结构,已经使用了光学,扫描和透射电子显微镜以及电子反向散射衍射的组合。通过压缩和拉伸测试来测量机械性能。这些研究可以得出一些结果:1.反复的固溶退火会影响铸坯表面的晶粒形态。 2.在7175合金中,在反复的固溶退火过程中形成了Al_2CuMg和Al_(12)Mg_2Cr_2颗粒。 3.与自然时效和随后的峰值时效合金相比,在反复固溶退火和随后的峰值时效条件下的试样显示出较低的拉伸强度值。 4.重复的固溶退火和自然时效都不会使峰值时效材料的断裂伸长率恶化,这对工业来说是一个很大的优势。

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