Department of Materials and Textile Engineering, Faculty of Engineering, Razi University, Kermanshah, Iran.
Department of Materials Science and Engineering, Sharif University of Technology, Tehran, 11365-9466, Iran.
Sci Rep. 2023 Jun 19;13(1):9892. doi: 10.1038/s41598-023-37164-3.
Controlling the moisture content of the electrode-covering is crucial in the production of defect-free, high-quality welds during shielded metal arc welding of steels. The welding industry has long faced the challenge of the high susceptibility of basic electrodes (e.g., E7018) to moisture absorption. In this paper, we demonstrate that applying a nanosilica coating to the surface of the E7018 electrode-covering using a dip-coating technique can effectively reduce the moisture absorption capability of the electrode-covering. The moisture measurement results before and after exposure to a moist environment of 80% humidity and a temperature of 27 °C for 9 h indicate that the moisture absorption values of conventional and nano-treated E7018 electrodes during exposure are 0.67 wt% and 0.03 wt%, respectively. While reducing the size of the pores on the surface of the electrode-covering can to some extent enhance the resistance to moisture absorption, it has been identified that turning the wetting behavior of the electrode-covering surface from hydrophilic to hydrophobic by the nanosilica coating is the most effective mechanism that contributes to the enhanced moisture absorption resistance of the nanosilica-treated electrode-covering. The results indicate that this approach does not have any deleterious effects on the chemical analysis and tensile properties of the weld metal. This simple modification to the electrode-covering can be generally applied to a wide range of electrode-covering types to produce hydrophobic, moisture-resistant electrodes.
在进行钢的金属保护电弧焊接时,控制电极覆盖层的水分含量对于生产无缺陷、高质量的焊缝至关重要。焊接行业长期以来一直面临着碱性焊条(如 E7018)易吸湿的挑战。在本文中,我们证明了使用浸涂技术在 E7018 电极覆盖层表面施加纳米二氧化硅涂层可以有效降低电极覆盖层的吸湿能力。在 80%湿度和 27°C 的潮湿环境中暴露 9 小时前后的水分测量结果表明,在暴露期间,传统和纳米处理的 E7018 电极的吸湿值分别为 0.67wt%和 0.03wt%。虽然减小电极覆盖层表面的孔径在一定程度上可以增强抗吸湿能力,但已经确定,纳米二氧化硅涂层将电极覆盖层表面的润湿性从亲水转变为疏水是提高纳米处理电极覆盖层抗吸湿能力的最有效机制。结果表明,这种方法对焊缝金属的化学分析和拉伸性能没有任何不利影响。这种对电极覆盖层的简单改性可以广泛应用于各种类型的电极覆盖层,以生产出疏水、耐湿的电极。