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首页> 外文期刊>Materials Characterization >Effects of two-step homogenization on precipitation behavior of Al3Zr dispersoids and recrystallization resistance in 7150 aluminum alloy
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Effects of two-step homogenization on precipitation behavior of Al3Zr dispersoids and recrystallization resistance in 7150 aluminum alloy

机译:两步均质化对7150铝合金中Al3Zr弥散体析出行为和抗再结晶性的影响

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The effect of two-step homogenization treatments on the precipitation behavior of Al3Zr dispersoids was investigated by transmission electron microscopy (TEM) in 7150 alloys. Two-step treatments with the first step in the temperature range of 300-400 degrees C followed by the second step at 470 degrees C were applied during homogenization. Compared with the conventional one-step homogenization, both a finer particle size and a higher number density of Al3Zr dispersoids were obtained with two-step homogenization treatments. The most effective dispersoid distribution was attained using the first step held at 300 degrees C. In addition, the two-step homogenization minimized the precipitate free zones and greatly increased the number density of dispersoids near dendrite grain boundaries. The effect of two-step homogenization on recrystallization resistance of 7150 alloys with different Zr contents was quantitatively analyzed using the electron backscattered diffraction (EBSD) technique. It was found that the improved dispersoid distribution through the two-step treatment can effectively inhibit the recrystallization process during the post-deformation annealing for 7150 alloys containing 0.04-0.09 wt.% Zr, resulting in a remarkable reduction of the volume fraction and grain size of recrystallization grains. (C) 2015 Elsevier Inc. All rights reserved.
机译:通过透射电子显微镜(TEM)研究了两步均质化处理对Al3Zr分散质沉淀行为的影响。在均质过程中,先在300-400摄氏度的温度范围内进行第一步处理,然后在470摄氏度下进行第二步处理。与常规的一步均质相比,通过两步均质处理可以获得更细的粒度和更高的Al3Zr分散质数密度。使用保持在300摄氏度的第一步可获得最有效的弥散体分布。此外,两步均质化可最大程度减少无沉淀物的区域,并大大增加枝晶晶界附近弥散体的数量密度。使用电子背散射衍射(EBSD)技术定量分析了两步均质化对7150种Zr含量不同的合金的抗再结晶性的影响。发现通过两步处理改善的分散相分布可以有效地抑制7150含0.04-0.09 wt%Zr的合金在变形后退火过程中的再结晶过程,从而显着降低体积分数和晶粒尺寸重结晶晶粒。 (C)2015 Elsevier Inc.保留所有权利。

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