首页> 外文会议>IEEE International Conference on Fuzzy Systems >Intelligent Constant Current Control for Resistance Spot Welding
【24h】

Intelligent Constant Current Control for Resistance Spot Welding

机译:电阻点焊智能恒流控制

获取原文
获取外文期刊封面目录资料

摘要

Resistance spot welding is one of the primary means of joining sheet metal in the automotive industry and other industries. The demand for improved corrosion resistance has led the automotive industry to increasingly use zinc coated steel in auto body construction. One of the major concerns associated with welding coated steel is the mushrooming effect (the increase in the electrode diameter due to deposition of copper into the spot surface) resulting in reduced current density and undersized welds (cold welds). The most common approach to this problem is based on the use of simple unconditional incremental algorithms (steppers) for preprogrammed current scheduling. In this paper, an intelligent algorithm is proposed for adjusting the amount of current to compensate for the electrodes degradation. The algorithm works as a fuzzy logic controller using a set of engineering rules with fuzzy predicates that dynamically adapt the secondary current to the state of the weld process. The state is identified by indirectly estimating two of the main process characteristics - weld quality and expulsion rate. A soft sensor for indirect estimation of the weld quality employing a Learning Vector Quantization (LVQ) type classifier is designed to provide a real time approximate assessment of the weld nugget diameter. Another soft sensing algorithm is applied to predict the impact of changes in current on the expulsion rate of the weld process. By maintaining the expulsion rate just below a minimal acceptable level, robust process control performance and satisfactory weld quality are achieved. The Intelligent Constant Current Control for Resistance Spot Welding is implemented and validated on a Medium Frequency Direct Current (MFDC) Constant Current Weld Controller. Results demonstrate a substantial improvement of weld quality and reduction of process variability due to the proposed new control algorithm.
机译:电阻点焊是汽车行业和其他行业中的金属板金属的主要方法之一。对改善耐腐蚀性的需求导致汽车工业越来越多地使用汽车机身建设中的镀锌钢。与焊接涂层钢相关的主要问题之一是蘑菇效应(由于铜沉积到光斑表面而导致的电极直径的增加)导致电流密度和低焊缝(冷焊接)。该问题最常见的方法是基于使用简单的无条件增量算法(Seperpers)用于预编程的电流调度。本文提出了一种智能算法,用于调节电流量以补偿电极降低。该算法使用具有模糊谓词的一组工程规则作为模糊逻辑控制器,它动态地使次级电流适应焊接过程的状态。通过间接估计主要过程特征 - 焊接质量和驱逐率,识别该状态。用于间接估计采用学习矢量量化(LVQ)型分类器的焊接质量的间接估计的软传感器旨在提供对焊缝直径的实时近似评估。应用另一种软感测算法以预测电流变化对焊接过程的驱逐率的影响。通过保持低于最小可接受的水平的驱逐率,实现了鲁棒过程控制性能和令人满意的焊接质量。电阻点焊的智能恒定电流控制在中频直流电流(MFDC)恒流焊接控制器上实现和验证。结果表明,由于所提出的新控制算法,焊接质量和减少过程变异性的大幅提高。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号