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Orientation Distribution and Deviation Behaviors of Dislocation Loops in a Quenched Al-Cu Alloy

Information Security and Communications Privacy(2024)

International Joint Laboratory for Light Alloys (MOE)

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Abstract
Dislocation loops in quenched aluminum alloys are usually seen deviating from their nominal habit planes, while the orientation distribution and deviation mechanism are far from understanding. Based on the method of tomographic crystallography of dislocations and correlative in-situ heating experiments in transmission electron microscopy (TEM), we revisit the three-dimensional (3D) characteristics and deviation behaviors of dislocation loops in a quenched Al-Cu alloy with an aim to fully unravel the relationship between dislocation crystallography and deviation behaviors. The results show that all the dislocation loops exhibit approximately circular shapes and have a /2 < 110>-type Burgers vectors, with loop orientations deviating from their pure edge orientation {110} of 0 degrees -17.8 degrees and distributing mainly close to the [101]-[001] and [101]-[111] edges of the standard stereographic triangle. Three types of deviation behaviors of dislocation loops are then defined, which are characterized by loop rotation around (100), (110) and irregular axes, respectively. Theoretical calculations of strain energy variation with increasing deviation angle indicate that the relatively low energy barrier may account for a high frequency of loop deviation in the low angle range. Detailed in-situ TEM heating experiments and correlative tomographic crystallography analyses strongly demonstrate the specific roles of dislocation gliding and climbing at elevated temperatures in the shrinkage, polygonization and deviation processes of dislocation loops, and the competitive and cooperative motion of dislocation segments close to slip planes {111} are the fundamental reasons for the formation of three types of deviated dislocation loops.
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Al-Cu alloy,Dislocation loops,Orientation deviation,Tomographic crystallography,In-situ heating
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要点】:本研究利用电子显微镜下的原位加热实验和晶体学方法,分析了淬火Al-Cu合金中位错环的三维特性和偏移行为,揭示了位错晶体学与偏移行为之间的关系。

方法】:通过电子显微镜的原位加热实验和晶体学中的断层成像技术,研究了位错环的三维形状、柏格斯矢量以及偏移行为。

实验】:在透射电子显微镜下对淬火Al-Cu合金进行原位加热实验,并使用晶体学断层成像技术,实验结果显示位错环呈近似圆形,具有/2 < 110>-型柏格斯矢量,偏移角度在0°至17.8°之间,主要分布在标准球极射影三角形中的[101]-[001]和[101]-[111]边缘附近,通过实验分析了位错环的偏移行为及其机制。