INVESTIGATION OF THE MICROSTRUCTURES AND MECHANICAL PROPERTIES OF THIN 5083 ALUMINUM ALLOY PLATES WELDED BY DOUBLE PULSE GMAW METHOD

F. Kahraman, A. Kahraman, G. Gençer, Muammer Tüm
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Abstract

In order to be able to use energy more efficiently, weight reduction solutions in machines, especially used in transportation, are sought by researchers. Aluminum alloys that are one of the light engineering alloys are commonly used in aerospace, automotive and sheet metal industry where the welding of thin plates is very important. Aluminum and its alloys have low weldability due to some characteristic properties such as high thermal conductivity, high electrical conductivity and the insulating oxide layer that has a very high melting temperature compared to aluminum. The weldability of thin aluminum plates is a much bigger problem. Thus, in this study, the thin EN AW-5083 H111 plates were welded by applying low heat input with a double pulse GMAW method. The effects of the used welding parameters on welding quality were investigated. Both macrography and micrography of the cross-sections of welded samples were investigated for metallographical examination by using optical microscopes (stereo and metal microscopes). The mechanical properties of samples were determined by hardness and tensile tests. In order to achieve the hardness distribution in the cross-sections of the welded samples, Vickers microhardness profiles test was carried out. It was observed that the pulse frequency of the current used in the welding process has significant effects on joint strength. HAZ broadened with an increase in pulse frequency. Thus, it has been observed that the joint strength was adversely affected due to the broadening of the inhomogeneous zones in the sample cross-section.
双脉冲gmaw法焊接5083铝合金薄板的组织与力学性能研究
为了能够更有效地利用能源,研究人员正在寻求减轻机器重量的解决方案,特别是在运输中使用的机器。铝合金是轻工程合金之一,广泛应用于航空航天、汽车、钣金等行业,在这些行业中薄板的焊接是非常重要的。铝及其合金由于具有高导热性、高导电性和绝缘氧化层等特性,与铝相比具有非常高的熔化温度,因此可焊性较低。薄铝板的可焊性是一个更大的问题。因此,在本研究中,采用低热输入双脉冲GMAW方法焊接EN AW-5083 h1111薄板。研究了焊接工艺参数对焊接质量的影响。利用光学显微镜(立体显微镜和金属显微镜)对焊接试样的横截面进行了宏观和微观金相分析。通过硬度和拉伸试验测定了试样的力学性能。为了获得焊接试样在截面上的硬度分布,进行了维氏显微硬度测试。结果表明,焊接过程中所用电流的脉冲频率对接头强度有显著影响。热影响区随脉冲频率的增加而展宽。因此,可以观察到,由于试样截面上非均匀区的扩大,接头强度受到不利影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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