Khushaim Muna S, Anjum Dalaver H
Department of Physics, Faculty of Science, Taibah University, Al-Madina, Saudi Arabia.
Nanotechnology Center, Taibah University, Al-Madina, Saudi Arabia.
Microsc Res Tech. 2021 May;84(5):869-880. doi: 10.1002/jemt.23646. Epub 2020 Nov 13.
The stress and strain play an important role in strengthening of the precipitation-hardened Aluminum (Al) alloys. Despite the determination of relationship between the mechanical properties and the precipitation existing in the microstructure of these alloys, a quantitative analysis of the local stress and the strain fields at the hardening-precipitates level has been seldom reported. In this paper, the microstructure of a T8 temper AA2195 Al alloy is investigated using aberration corrected scanning transmission electron microscopy (AC-STEM). The strain fields in Al matrix in the vicinity of observed precipitates, namely T and β , are determined using geometric phase analysis (GPA). Young's modulus (Y ) mapping of the corresponding areas is determined from the valence electron energy loss spectroscopy (VEELS) measured bulk Plasmon energy (E ) of the alloys. The GPA-determined strains were then combined with VEELS-determined Y under the linear theory of elasticity to give rise the local stresses in the alloy. The obtained results show that the local stresses in Al matrix having no precipitates were in the range of 138 ± 2 MPa. Whereas, in the vicinity of thin and thick T platelet shape precipitates, the stresses were found to be about 202 ± 3 MPa and 195 ±3 MPa, respectively. The stresses measured in the vicinity of β spherical shape precipitates found out to be 140 ± 3 MPa which was near to the local stress value in Al matrix. Our findings suggest that the precipitate hardening in T8 temper AA2195 Al alloy predominantly stems from thin T precipitates.
应力和应变在沉淀硬化铝合金的强化过程中起着重要作用。尽管已确定了这些合金微观结构中的力学性能与析出物之间的关系,但关于硬化析出物水平处局部应力和应变场的定量分析却鲜有报道。本文采用像差校正扫描透射电子显微镜(AC-STEM)研究了T8态AA2195铝合金的微观结构。利用几何相位分析(GPA)确定了观察到的析出物(即T相和β相)附近铝基体中的应变场。通过合金的价电子能量损失谱(VEELS)测量的体等离子体能量(E)确定了相应区域的杨氏模量(Y)映射。然后,根据弹性线性理论,将GPA确定的应变与VEELS确定的Y相结合,得出合金中的局部应力。所得结果表明,无析出物的铝基体中的局部应力范围为138±2 MPa。而在薄的和厚的T片状析出物附近,应力分别约为202±3 MPa和195±3 MPa。在β球状析出物附近测得的应力为140±3 MPa,接近铝基体中的局部应力值。我们的研究结果表明,T8态AA2195铝合金中的析出硬化主要源于薄的T析出物。