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多向锻造加工的AA-6063的微观结构、织构、电学和力学性能

Microstructure, Texture, Electrical and Mechanical Properties of AA-6063 Processed by Multi Directional Forging.

作者信息

Dashti Alireza, Shaeri Mohammad Hossein, Taghiabadi Reza, Djavanroodi Faramarz, Vali Ghazvini Farzaneh, Javadi Hamid

机构信息

Department of Materials Science and Engineering, Imam Khomeini International University (IKIU), Qazvin 3414916818, Iran.

Mechanical Engineering Department, Prince Mohammad Bin Fahd University, Al Khobar 31952, Saudi Arabia.

出版信息

Materials (Basel). 2018 Nov 29;11(12):2419. doi: 10.3390/ma11122419.

Abstract

In current research, the effect of the multi-directional forging (MDF) process on the microstructure, texture, mechanical and electrical properties of AA-6063 under different heat treatment conditions at various MDF temperatures was studied. The annealed AA-6063 alloy was processed up to three passes of MDF at ambient temperature. Three passes of this process were also applied to the solution-treated AA-6063 at ambient temperature and 177 °C. Microstructural investigations demonstrated that the MDF process led to a significant reduction in the average grain size as well as a considerable increase in the fraction of low angle grain boundaries. Texture analysis revealed that copper and Goss textures were mainly developed within the annealed and solution-treated samples of AA-6063, respectively. The hardness and shear strength values of all processed samples also showed a sizeable improvement compared to the initial heat-treated samples. For example, the hardness and shear yield strength value of the solution-treated sample MDFed for three passes showed more than 100 and 70% increase, respectively. The effect of the MDF process on the electrical conductivity of AA-6063 under different heat treatment conditions at various temperatures was negligible. So, it can be concluded that the MDF process increased the mechanical properties without an appreciable decrease in electrical conductivity.

摘要

在当前研究中,研究了多向锻造(MDF)工艺在不同MDF温度下,对不同热处理条件下AA-6063的微观结构、织构、力学性能和电学性能的影响。对退火态的AA-6063合金在室温下进行了多达三道次的MDF加工。该工艺的三道次加工也应用于在室温及177℃下固溶处理的AA-6063。微观结构研究表明,MDF工艺导致平均晶粒尺寸显著减小,同时低角度晶界比例大幅增加。织构分析表明,铜织构和高斯织构分别主要在AA-6063的退火态和固溶处理态样品中形成。与初始热处理样品相比,所有加工样品的硬度和剪切强度值也有显著提高。例如,经过三道次MDF加工的固溶处理样品的硬度和剪切屈服强度值分别提高了100%以上和70%以上。在不同温度下的不同热处理条件下,MDF工艺对AA-6063电导率的影响可忽略不计。因此,可以得出结论,MDF工艺提高了力学性能,而电导率没有明显下降。

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