分析了采用埋弧焊法确定S355JR结构钢焊接工艺的过程

Q3 Engineering
A. Wieczorska, W. Labuda
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引用次数: 0

摘要

本文以钢板厚度为25mm和100mm,坡口v的S355JR结构钢为例,提出了焊接技术鉴定的问题。本工作的主要目的是根据PN EN ISO 15614的要求,尝试对埋弧焊工艺进行全面鉴定。对焊接技术的鉴定问题给予了特别的关注。样品进行了无损检测,即目测和渗透检测,以及超声波检测和热处理。其次是破坏性测试,包括宏观测试和硬度测试。根据拟议的埋弧焊技术识别程序,一旦进行了必要的试验,并取得了积极的结果。文件已完成,为工厂生产控制和焊接质量获得合格证书所需的分析已进行。埋弧焊通常用于高度可靠的对接接头,特别是在连接厚构件时。这是通过正确设计待焊部件的准备和开发焊接技术实现的,该技术实际上消除了传统技术中出现的预阶段,从而消除了其影响焊接接头质量的风险。埋弧焊在实施过程中,遇到了许多技术问题。第一次试验的接头存在很多缺陷,如粘接和夹渣。此外,获得具有正确轮廓的焊缝和从焊缝坡口清除渣是困难的。通过使用不同的参数和焊接坡口几何形状进行连续试验,消除了这些障碍。任何焊接工艺的正确实施都取决于其输入参数。这些参数包括焊接电流、焊接速度、焊接电流、丝径、焊接电压等。埋弧焊(SAW)在制造业中被广泛应用,因为它更可靠,在工作中提供深度渗透,确保物体表面光滑,并导致高生产率。这项技术是为一家生产汽轮机控制盘的公司开发的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of the process of qualifying the welding technology of S355JR structural steel using the submerged arc welding method
This paper presents the issue of welding technology qualification using the example of structural steel S355JR with a plate thickness of 25 mm and 100 mm, bevelling V. The main objective of this work was to attempt to perform a full qualification of the submerged arc welding process in accordance with the requirements of PN EN ISO 15614. Particular attention was paid to the issue of the qualification of welding technology. The samples were subjected to non-destructive testing, i.e. visual and penetrant testing, as well as ultrasonic testing and heat treatment. This was followed by destructive testing, including macroscopic testing and hardness testing. According to the proposed procedure for the recognition of submerged arc welding technology, once the necessary tests had been carried out and the protocols with positive results had been obtained. The documentation had been completed, the analysis needed to obtain certificates of conformity for factory production control and welding quality was carried out.Submerged arc welding is often used for highly responsible butt joints, particularly when joining thick components. This has been achieved through the proper design of the preparation of the parts to be welded and the development of a welding technology that practically eliminates the pre-phase that occurs in traditional technology, thereby eliminating the risk of it affecting the quality of the welded joint.During the implementation of submerged arc welding, a number of technological problems were encountered. The first test joints contained many defects, i.e. sticking and slag inclusions inside the welds. In addition, obtaining welds with the correct profile and removing the slag from the weld groove was difficult. These obstacles were eliminated experimentally by carrying out successive tests using different parameters and welding groove geometries.The correct implementation of any welding process depends on its input parameters. These parameters include welding current, welding speed, welding current, wire diameter, welding voltage and many others. Submerged arc welding (SAW) is widely used in the industry for manufacturing as it is more reliable, provides deep penetration in the work, ensures a smooth finish on objects, and results in high productivity.The technology was developed for a company that manufactures control discs for steam turbines.
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来源期刊
Journal of Achievements in Materials and Manufacturing Engineering
Journal of Achievements in Materials and Manufacturing Engineering Engineering-Industrial and Manufacturing Engineering
CiteScore
2.10
自引率
0.00%
发文量
15
期刊介绍: The Journal of Achievements in Materials and Manufacturing Engineering has been published by the Association for Computational Materials Science and Surface Engineering in collaboration with the World Academy of Materials and Manufacturing Engineering WAMME and the Section Metallic Materials of the Committee of Materials Science of the Polish Academy of Sciences as a monthly. It has 12 points which was received during the evaluation by the Ministry of Science and Higher Education journals and ICV 2017:100 on the ICI Journals Master list announced by the Index Copernicus. It is a continuation of "Proceedings on Achievements in Mechanical and Materials Engineering" published in 1992-2005. Scope: Materials[...] Properties[...] Methodology of Research[...] Analysis and Modelling[...] Manufacturing and Processingv Biomedical and Dental Engineering and Materials[...] Cleaner Production[...] Industrial Mangement and Organisation [...] Education and Research Trends[...]
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