Influence of Submerged Arc Welding Current Intensity on the Mechanical Properties and Microstructure of Pressure Vessel P355N Steel

Materials Pub Date : 2024-07-16 DOI:10.3390/ma17143520
B. Cioroagă, Ana Virginia Socalici, Vasile George Cioată, Emanoil Linul, I. Hulka, Iasmina-Mădălina Anghel
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Abstract

This article presents a study on the influence of the intensity of the welding current on the properties of the mechanical strain strength of welded joints made by using submerged arc welding technology. The influence of the welding current on the microstructure of the welded joints was also observed in different regions of the cross-section of the welding seam. Also subject to observation was the mode of influence of the welding current on the geometry and dimensions of the welding seams. The welded samples were obtained using five different welding regimes whose main variable was the intensity of the welding current, which had values between 300 A and 700 A. The criterion used as a reference for comparing the effects produced by the studied welding regimes was a standard welding regime that is used in the industry for welding railway tank wagons, with a welding current intensity of 480 A. The base material used in the experiments was a fine-grained carbon steel specially intended for the manufacture of pressure vessels identified as P355 N; the semi-finished product from which the samples were made consisted of 6 mm thick laminated sheets used in the manufacture of the covers of the vessels that make up the railway tank wagon. The aim of this study was to highlight the differences that may appear through varying the current welding parameter and identify welding regimes that can provide welded joints with superior mechanical properties compared to what is currently employed in the industry. This study focused on the most widespread technology of welding pressure vessels: the submerged electric arc welding method.
埋弧焊电流强度对压力容器 P355N 钢机械性能和微观结构的影响
本文研究了焊接电流强度对埋弧焊技术焊接接头机械应变强度特性的影响。同时还观察了焊缝横截面不同区域的焊接电流对焊点微观结构的影响。此外,还观察了焊接电流对焊缝几何形状和尺寸的影响模式。焊接样品是使用五种不同的焊接方法获得的,其主要变量是焊接电流强度,其值在 300 A 到 700 A 之间。用于比较所研究的焊接方法产生的影响的参考标准是工业中用于焊接铁路罐车的标准焊接方法,焊接电流强度为 480 A。实验中使用的母材是一种专门用于制造压力容器的细粒度碳钢,型号为 P355 N;样品的半成品包括用于制造铁路罐车容器盖的 6 毫米厚的层压板。这项研究的目的是强调通过改变当前焊接参数可能出现的差异,并确定与行业当前采用的焊接方法相比,哪些焊接方法能使焊接接头具有更优越的机械性能。这项研究的重点是最普遍的压力容器焊接技术:埋弧电弧焊接法。
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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