Effect of artificial aging treatment on microstructure, mechanical properties and fracture behavior of 2017A alloy

Nassim Aguechari, A. Boudiaf, M. Ould Ouali
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引用次数: 1

Abstract

The effect of artificial aging treatment on 2017A aluminum alloy microstructure, mechanical properties, and fracture behavior was investigated. The samples were taken from the as-received alloy and aged at 170 °C for 5, 10, 15, 20, and 30 hours. An optical microscope, scanning electron microscope (SEM), X-ray diffraction (XRD), microhardness and tensile strength tests were used to characterize mechanical and microstructural properties. The microstructural analysis revealed that as the aging treatment duration is increased, the size and density of precipitates grow larger and more numerous. According to X-ray diffraction measurements, the microstructural evolution caused by aging treatments is primarily due to an increase in precipitation of the hardening phase -Al2Cu. According to the tensile test results, the yield stress increases with increasing aging duration. The fracture surface analysis of failed specimens subjected to tensile loading revealed that the aging treatment conditions had a significant impact on the morphology and mode of fracture: the mixed-mode (ductile-brittle) failure was established for intermediate aging durations (aging at 170 °C for 15 and 20 h), and the intergranular fracture was found to be more pronounced when the aging duration is prolonged due to the coalescence of fine precipitates at the grain boundary.
人工时效处理对2017A合金组织、力学性能及断裂行为的影响
研究了人工时效处理对2017A铝合金组织、力学性能和断裂行为的影响。样品从接收的合金中取出,在170°C下时效5、10、15、20和30小时。采用光学显微镜、扫描电镜(SEM)、x射线衍射(XRD)、显微硬度和抗拉强度等测试手段对材料的力学性能和微观组织性能进行表征。显微组织分析表明,随着时效时间的延长,析出相的尺寸和密度增大,析出相数量增多。根据x射线衍射测量,时效处理引起的显微组织演变主要是由于硬化相-Al2Cu析出增加。拉伸试验结果表明,屈服应力随时效时间的延长而增大。拉伸加载失效试样的断口形貌分析表明,时效处理条件对断口形貌和断口模式有显著影响:中等时效时间(170℃时效15和20 h)形成了韧脆混合破坏模式,随着时效时间的延长,晶界处细小析出物聚结,晶间断裂更加明显。
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