Dvirna Olha, Wieczorska Agata, Abramczyk Norbert, Lesnau Anna
Department of Engineering Sciences, Faculty of Marine Engineering, Gdynia Maritime University, 81-87 Morska St., 81-225 Gdynia, Poland.
Materials (Basel). 2023 Jul 19;16(14):5100. doi: 10.3390/ma16145100.
The article describes an innovative post-weld surface finishing method, which is characterized by moving a specialized cutting tool along a butt weld. The aforementioned method is unique for the machining allowance, which is treated as the weld bead height and is removed in one step with one pass of the cutting tool. The tool is equipped on one side with linearly arranged tooth-shaped cutting elements, with the adjacent teeth height changing and increasing according to the direction of the feed. The non-standard geometry of the cutting tool enables the finishing of a heterogeneous post-weld surface with increased hardness. The results of studying the 2D profile parameters and the 3D stereometric characteristics of the surface roughness using the optical method are presented in the article. Test samples were made of S235JR steel and butt welded with the MMA, MIG, and TIG methods. Subsequently, the welding bead was ground and finished in accordance with the innovative method to flush the bead and the base metal's surface. Additionally, residual stress analyses were performed using the X-ray diffraction method in the surface layers of the test samples. Based on the conducted research, the influence of the innovative finishing method on the surface quality is described.
本文介绍了一种创新的焊后表面精加工方法,其特点是使专用切削刀具沿对接焊缝移动。上述方法在加工余量方面独具特色,加工余量被视为焊缝余高,并通过切削刀具一次走刀一步去除。刀具一侧配备有线性排列的齿形切削元件,相邻齿的高度根据进给方向变化并递增。切削刀具的非标准几何形状能够对硬度增加的异质焊后表面进行精加工。本文给出了使用光学方法研究表面粗糙度的二维轮廓参数和三维立体特征的结果。测试样品由S235JR钢制成,并采用手工电弧焊(MMA)、熔化极气体保护焊(MIG)和钨极惰性气体保护焊(TIG)方法进行对接焊接。随后,按照创新方法对焊缝进行磨削和精加工,以使焊缝和母材表面齐平。此外,还使用X射线衍射法对测试样品表面层进行了残余应力分析。基于所进行的研究,描述了创新精加工方法对表面质量的影响。