Evaluating the Influence of Environmental Factors and Parameters on Advancements in Welding and Joining Processes: A Review

S. Sudarno, Quang Thang Do, Haris Nubli, Dandun Mahesa Prabowoputra, Nur Candra Dana Agusti, Ridwan Ridwan, Anggi Vandika
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Abstract

This review article presents a comprehensive overview of welding, including its environmental influence, common welding failures, welding parameters, and predictions of development regarding welding and corrosion. The quality and integrity of welds can be significantly affected by environmental factors such as temperature, humidity, and atmospheric contaminants. Moreover, welding failures can occur due to various reasons, such as improper welding techniques, inadequate preparation, corrosion, or material defects, leading to structural weaknesses and compromised joint integrity. Furthermore, notable progress has been achieved in welding system technology, encompassing automation, robotics, and real-time monitoring. These advancements underscore the vital role of welding parameters in transforming control, precision, and productivity within the welding process. The integration of innovative welding systems has led to improved welding efficiency, reduced human error, and increased overall process reliability. This review consolidates knowledge from diverse sources, making it a valuable resource for researchers, practitioners, and industries involved in welding.
评估环境因素和参数对焊接和连接工艺进步的影响:综述
这篇综述文章全面介绍了焊接,包括其环境影响、常见焊接故障、焊接参数以及焊接和腐蚀方面的发展预测。焊接的质量和完整性会受到温度、湿度和大气污染物等环境因素的严重影响。此外,焊接失败的原因有很多,如焊接技术不当、准备不充分、腐蚀或材料缺陷,从而导致结构薄弱和接头完整性受损。此外,焊接系统技术也取得了显著进步,包括自动化、机器人技术和实时监控。这些进步凸显了焊接参数在改变焊接过程的控制、精度和生产率方面的重要作用。创新焊接系统的集成提高了焊接效率,减少了人为错误,增加了整体工艺可靠性。本综述整合了来自不同来源的知识,是焊接相关研究人员、从业人员和行业的宝贵资源。
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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