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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Atomic-scale investigation of the heterogeneous precipitation in the E (Al18Mg3Cr2) dispersoid of 7075 aluminum alloy
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Atomic-scale investigation of the heterogeneous precipitation in the E (Al18Mg3Cr2) dispersoid of 7075 aluminum alloy

机译:7075铝合金的E(Al18Mg3Cr2)分散体中异质沉淀的原子级调查

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摘要

The heterogeneous precipitation of the eta (MgZn2) phase on the E (Al18Mg3Cr2) dispersoids of the 7075 aluminum alloy was systematically investigated by atomic resolution high-angle annular dark-field scanning transmission electron microscopy (HAADF-STEM) and energy dispersive X-ray spectrometry (EDX). It is found that coarse B particles are heterogeneously precipitated at the E particle interface after water quenching and isothermal aging at 120 degrees C. The incoherent E/Al interface is responsible for the high tendency of heterogeneous precipitation of the B phase. Two different orientation relationships (ORs) between the eta, E and Al matrix are identified: OR1 [2 (11) over bar0](eta)[011](E)//[(1) over bar 12](Al), (01 (1) over bar0)(eta)//(13 (3) over bar)(E)//(201)(Al), OR2 [(1) over bar 12](E)//[0001](eta)//[011](Al), (01 (1) over bar0 )(eta)//(220)(E)//(34 (4) over bar)(Al). The eta phase is preferential to nucleate along the {111}(E) or the {220}(E) planes, depending on its OR. The heterogeneous nucleation of B phase on the E particle could stabilize the E/Al interface by introducing a coherent E/eta interface, which increases the drive force of heterogeneous precipitation. The reorientation of eta phase and mutual diffusion of solute atoms could assist the coherency of the E/eta interface. The present results suggest that increasing the coherency of the E/Al interface is a promising method to suppress the heterogeneous precipitation of the eta phase. (C) 2020 Elsevier B.V. All rights reserved.
机译:采用原子分辨高角度环形暗场扫描透射电子显微镜(HAADF-STEM)和能量色散X射线能谱(EDX)系统研究了7075铝合金E(Al18Mg3Cr2)分散体上eta(MgZn2)相的非均匀沉淀。研究发现,在120℃水淬和等温时效后,粗B颗粒在E颗粒界面上不均匀沉淀。非相干的E/Al界面是B相非均匀沉淀的主要原因。在eta、E和Al矩阵之间确定了两种不同的方向关系(OR):OR1[2(11)超过bar0](eta)[011](E)/[(1)超过Bar12](Al),(01(1)超过bar0)(eta)//(13(3)超过bar)(E)/(201)(Al),或2[(1)超过Bar12](E)/[0001](eta)/[011](Al),(01(1)超过bar0)(eta)/(220)(E)/(34(4)超过bar)(Al)。eta相优先于沿着{111}(E)或{220}(E)平面成核,这取决于它的or。B相在E颗粒上的非均相成核可以通过引入相干的E/eta界面来稳定E/Al界面,从而增加非均相沉淀的驱动力。eta相的重新定向和溶质原子的相互扩散有助于E/eta界面的相干性。目前的结果表明,增加E/Al界面的相干性是抑制eta相非均匀沉淀的一种很有前途的方法。(C) 2020爱思唯尔B.V.版权所有。

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