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首页> 外文期刊>Archives of Metallurgy and Materials >Influence of Degree of Deformation and Aging Time on Mechanical Properties and Microstructure of Aluminium Alloy with Zinc / Wp?yw Stopnia Odkszta?cenia I Czasu Starzenia Na W?a?ciwo?i Mechaniczne I Mikrostruktur? Stopu Aluminium Z Cynkiem
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Influence of Degree of Deformation and Aging Time on Mechanical Properties and Microstructure of Aluminium Alloy with Zinc / Wp?yw Stopnia Odkszta?cenia I Czasu Starzenia Na W?a?ciwo?i Mechaniczne I Mikrostruktur? Stopu Aluminium Z Cynkiem

机译:变形程度和时效时间对含锌铝合金的力学性能和组织的影响。变形程度和时效时间的影响锌铝合金

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摘要

In order to investigate the influence of the deformation degree and aging time on the mechanical properties and microstructure of AA7050 alloy static tensile test, microhardness measurements, calorimetric analysis and observations of the microstructure in the transmission and scanning electron microscope were carried out. For study a series of cylindrical specimens with an initial diameter of about 3 mm were used. The samples were saturated at a temperature of 470° C for 1 hour and quenched in water. The samples were then subjected to deformation up to the three levels: 0%, 5% and 10%. Deformed samples was artificially aged at 120°C for 6 hours, 12 hours, 24 hours and 72 hours. The results showed that the increase in the degree of deformation caused an increase in yield strength and a decrease in ductility. The longer aging time influenced on an increase in tensile strength, yield stress and microhardness and a decrease in ductility. An analysis of the precipitates present in the material was conducted. The highest value of yield strength equal 538 MPa with elongation 9.2% were obtained for sample pre-strained to 10% and aged for 24 hours. The obtained results showed that prolongation in aging time and use of pre-strain were beneficial for precipitation processes courses, consequently, for optimal mechanical properties of alloy 7050.
机译:为了研究变形程度和时效时间对AA7050合金静态拉伸试验的力学性能和显微组织的影响,在透射电子显微镜和扫描电子显微镜下进行了显微硬度测量,量热分析和显微组织观察。为了研究,使用了一系列直径约为3 mm的圆柱形试样。将样品在470℃的温度下饱和1小时,并在水中淬灭。然后使样品变形至三个水平:0%,5%和10%。将变形的样品在120℃下人工老化6小时,12小时,24小时和72小时。结果表明,变形程度的增加导致屈服强度的增加和延性的降低。较长的老化时间影响抗拉强度,屈服应力和显微硬度的增加以及延展性的降低。对材料中存在的沉淀物进行了分析。对于预应变至10%并老化24小时的样品,其屈服强度的最大值达到538 MPa,伸长率为9.2%。获得的结果表明,时效时间的延长和预应变的使用有利于沉淀过程,因此对于7050合金的最佳机械性能而言是有利的。

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