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首页> 外文期刊>Transactions of the Indian Institute of Metals >Investigation of Microstructure, Mechanical Properties and Residual Stress in Non-equal-Channel Angular Pressing of 6061 Aluminum Alloy
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Investigation of Microstructure, Mechanical Properties and Residual Stress in Non-equal-Channel Angular Pressing of 6061 Aluminum Alloy

机译:6061铝合金非相等通道角度压制微观结构,机械性能和残余应力研究

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摘要

In equal-channel angular pressing, it is necessary to repeat the process to achieve large strains. However, in non-equal-channel angular pressing (NECAP), the large strains can be achieved without repetition of the process. In this study, the effect of the NECAP on microstructure, mechanical properties and residual stress (RS) of widely used 6061 aluminum alloy sample was investigated. After the NECAP process, yield strength, tensile strength, hardness and uniformity of the hardness distribution increased dramatically and fracture strain and tensile toughness were significantly reduced. The effect of the NECAP on the yield strength was significantly higher than other parameters of the mechanical properties. Also, the microstructure was obtained with more uniformity and with the grain size of 18.5 times smaller relative to the initial sample. The numerical simulation results showed that by increasing friction coefficient, the plastic strain increases. In this study, a very good agreement was obtained between the results of experimental method of contour and finite element method in the RS measuring. In this paper, the RS factor (R.S.F.) was introduced to investigate the RS distribution. With the aid of this factor, one can obtain a general understanding of the RS distribution in one part. In this research, the effect of the friction coefficient on the R.S.F. in surfaces and middle cross section of the NECAPed sample was discussed.
机译:在相等通道角度压制中,必须重复该过程以实现大菌株。然而,在非相等通道角压(Necap)中,可以在不重复该过程的情况下实现大的菌株。在该研究中,研究了Necap对广泛使用的6061铝合金样品的微观结构,机械性能和残余应力(Rs)的影响。在Necap工艺,屈服强度,抗拉强度,硬度分布的硬度和均匀性显着降低和裂缝菌株和拉伸韧性,显着降低。 Necap对屈服强度的影响显着高于机械性能的其他参数。而且,相对于初始样品,用更均匀性和晶粒尺寸的晶粒尺寸的粒径为18.5倍的微观结构。数值模拟结果表明,通过增加摩擦系数,塑性应变增加。在这项研究中,在RS测量中的轮廓和有限元方法的实验方法结果之间获得了非常好的一致性。在本文中,引入了RS因子(R.S.F.)来研究RS分布。借助这个因素,可以在一部分中获得对RS分布的一般理解。在本研究中,摩擦系数对R.S.F的影响。讨论了在染色样品的表面和中间横截面。

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