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Overview of recent advances of process analysis and quality control in resistance spot welding

机译:电阻点焊过程分析和质量控制的最新进展概述

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Resistance spot welding (RSW) is frequently employed in current industrial occasions. However, the process is multi-field coupled and highly nonlinear, and full of uncertainties and disturbances. This paper presents recent primary advances and progress in process analysis and quality control of the RSW operations. Online welding process analysis, and relative online quality estimation for the welding products, are very important because they can help to save energy and improve the efficiency during actual production. It should deeply interpret the process characteristics, and then reasonable relations between selected monitoring process variables, such as dynamic resistance or electrode displacement, and quality criteria, such as nugget size or tensile-shear strength, can be established. Apart from online process analysis using mathematical tools, using different kinds of auxiliary measuring signals from external sensors and intrinsic process variables to monitor the process and obtain the quality information of the weld is presented and discussed. Then various process control works are reviewed. Besides the various parameters optimization methods, kinds of controllers, including feedback controllers, intelligent controllers and comprehensive controllers which combined the online quality estimation and control strategy application together, for obtaining welds with satisfactory quality, are respectively discussed. It can be seen that the establishment of general models to online process analysis, quality estimation and real time control system design for obtaining welds with satisfactory quality still remains a big challenge in reality. This work can provide references and enlightens for current academic researches or actual production in RSW relative area. (C) 2019 Elsevier Ltd. All rights reserved.
机译:电阻点焊(RSW)在当前的工业场合中经常使用。但是,该过程是多场耦合且高度非线性的,并且充满不确定性和干扰。本文介绍了RSW操作的过程分析和质量控制方面的最新主要进展。在线焊接过程分析和相对在线的焊接产品质量评估非常重要,因为它们可以帮助节省能源并提高实际生产效率。它应该深入地解释过程特性,然后可以在选定的监视过程变量(例如动态电阻或电极位移)与质量标准(例如熔核大小或拉伸剪切强度)之间建立合理的关系。除了使用数学工具进行在线过程分析外,还介绍并讨论了使用来自外部传感器的各种辅助测量信号和内部过程变量来监视过程并获得焊缝质量信息的方法。然后审查各种过程控制工作。除了各种参数优化方法外,还分别讨论了将在线质量评估和控制策略应用结合在一起的各种控制器,包括反馈控制器,智能控制器和综合控制器,以获得质量令人满意的焊缝。可以看出,建立在线过程分析,质量估算和实时控制系统设计的通用模型以获得质量令人满意的焊缝仍然是现实中的一大挑战。这项工作可以为RSW相关领域的当前学术研究或实际生产提供参考和启发。 (C)2019 Elsevier Ltd.保留所有权利。

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