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首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Effect of thermal deformation parameters on the microstructure, texture, and microhardness of 5754 aluminum alloy
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Effect of thermal deformation parameters on the microstructure, texture, and microhardness of 5754 aluminum alloy

机译:热变形参数对5754铝合金微观结构,质地和微硬度的影响

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The evolution of the microstructure, texture, and microhardness of 5754 aluminum alloy subjected to high-temperature plastic deformation under different deformation conditions was studied on the basis of thermal simulations and electron-backscattered diffraction and Vickers microhardness experiments. The results of a misorientation angle study show that an increase in the deformation temperature and strain rate promoted the transformation of low-angle grain boundaries to high-angle grain boundaries, which contributed to dynamic recrys-tallization. The effect of the deformation parameters on the texture and its evolution during the recrystallization process was explored on the basis of the orientation distribution function. The results demonstrate that the deformed samples mainly exhibited the features of type A, B, and B textures. The formation and growth of the recrystallized grains clearly affected the texture evolution. The microhardness results show that the variation of the microhardness was closely related to the temperature, strain rate, and dynamic recrystallization.
机译:在不同变形条件下进行高温塑性变形的5754铝合金的微观结构,质地和显微硬度的演变是基于热模拟和电子背散射衍射和维氏微硬度实验。无主管角度研究的结果表明,变形温度和应变速率的增加促进了对高角度晶界的低角度晶界的转变,这有助于动态再次效率。基于定向分布函数探讨了重结晶过程中变形参数对纹理的影响及其演化。结果表明,变形样品主要表现出A,B和B纹理的特征。重结晶晶粒的形成和生长显然影响了纹理演化。显微硬度结果表明,微硬度的变异与温度,应变率和动态重结晶密切相关。

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