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形变时效态Al-3.0Cu-1.8Mg-0.5Si合金的 强化机制研究
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Study on Strengthening Mechanism of Al-3.0Cu-1.8Mg-0.5Si Alloy Processed by Thermo-mechanical Treatment
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    摘要:

    时效前形变的引入,可以改变析出强化型 Al-Cu-Mg(-Si)合金的时效析出过程, 并且这种变化与形变量直接相关. 为研究多元合金的形变强化机制,有必要利用电子背散射衍 射(EBSD)、X射线衍射(XRD)、透射电子显微镜(TEM)等多种表征手段,对不同形变时效态Al- 3.0Cu-1.8Mg-0.5Si(wt.%)合金的强化方式进行定量或半定量计算,阐述不同强化方式对强度的 贡献,为铝合金中形变时效工艺的应用提供理论支撑. 研究发现,形变量的提高可以提高合金峰 值硬度和强度,原因在于三个方面,一是晶界面积的增加,二是位错密度的增大,三是析出相尺寸 更细小、分布更均匀. 并且,当形变量大于6%时,形变量越大,析出相对强度的贡献越高.

    Abstract:

    The introduction of deformation before aging can change the aging precipitation process of the precipitation-strengthened Al-Cu-Mg(-Si)alloy,and this change is directly related to the amount of deformation. In order to study the deformation strengthening mechanism of multi-element alloys,it is necessary to use electron backscatter diffraction(EBSD),X-ray diffraction(XRD),transmission electron microscopy(TEM)and other methods to test the Al-3.0Cu-1.8 Mg-0.5Si(wt.%)alloy treated by different deformation and aging process,quanti? tatively or semi-quantitatively,so that the contribution of different strengthening methods to the strength is listed, which provides theoretical support for the application of thermo-mechanical treatment in aluminum alloys. It is found that the increase in deformation can increase the peak hardness and strength of the alloy due to three reasons. One is the increase of the grain-boundary area,the second is the increase of the dislocation density,and the third is that the size of the precipitates is smaller and the distribution is more uniform. Furthermore,the contribution of pre? cipitates to the strength is getting higher with a larger deformation prior to the aging process,when the amount of de? formation is greater than 6%.

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牛凤姣 ,伍翠兰 ,武静 ,沈书成 ,罗世芳 .形变时效态Al-3.0Cu-1.8Mg-0.5Si合金的 强化机制研究[J].湖南大学学报:自然科学版,2022,49(6):192~202

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  • 在线发布日期: 2022-06-23
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