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Ultrasonic Real-Time Quality Monitoring Of Aluminum Spot Weld Process.

机译:铝点焊过程的超声波实时质量监控。

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摘要

The real-time ultrasonic spot weld monitoring system, introduced by our research group, has been designed for the unsupervised quality characterization of the spot welding process. It comprises the ultrasonic transducer (probe) built into one of the welding electrodes and an electronics hardware unit which gathers information from the transducer, performs real-time weld quality characterization and communicates with the robot programmable logic controller (PLC). The system has been fully developed for the inspection of spot welds manufactured in steel alloys, and has been mainly applied in the automotive industry.;In recent years, a variety of materials have been introduced to the automotive industry. These include high strength steels, magnesium alloys, and aluminum alloys. Aluminum alloys have been of particular interest due to their high strength-to-weight ratio. Resistance spot welding requirements for aluminum vary greatly from those of steel. Additionally, the oxide film formed on the aluminum surface increases the heat generation between the copper electrodes and the aluminum plates leading to accelerated electrode deterioration. Preliminary studies showed that the real-time quality inspection system was not able to monitor spot welds manufactured with aluminum.;The extensive experimental research, finite element modelling of the aluminum welding process and finite difference modeling of the acoustic wave propagation through the aluminum spot welds presented in this dissertation, revealed that the thermodynamics and hence the acoustic wave propagation through an aluminum and a steel spot weld differ significantly. For this reason, the hardware requirements and the algorithms developed to determine the welds quality from the ultrasonic data used on steel, no longer apply on aluminum spot welds.;After updating the system and designing the required algorithms, parameters such as liquid nugget penetration and nugget diameter were available in the ultrasonic data acquired during the aluminum welding process. Finally, a fuzzy system was designed to receive these parameters and determine the weld quality.
机译:我们的研究小组介绍的实时超声点焊监控系统是专为点焊过程的无监督质量表征而设计的。它包括内置在焊接电极之一中的超声换能器(探针)和电子硬件单元,该电子硬件单元从换能器收集信息,执行实时焊接质量表征,并与机器人可编程逻辑控制器(PLC)通信。该系统已经过全面开发,可用于检测合金钢中的点焊,并且已主要应用于汽车行业。近年来,已将多种材料引入汽车行业。这些包括高强度钢,镁合金和铝合金。铝合金由于其高的重量重量比而特别引起人们的兴趣。铝的电阻点焊要求与钢的要求大不相同。另外,在铝表面上形成的氧化膜增加了铜电极和铝板之间的热量产生,导致加速的电极劣化。初步研究表明,实时质量检查系统无法监视铝制点焊;广泛的实验研究,铝制焊接过程的有限元建模以及声波在铝制点焊中传播的有限差分建模。本文的研究表明,热力学以及声波在铝和钢点焊机中的传播差异很大。因此,硬件要求和开发的用于从钢上使用的超声波数据确定焊缝质量的算法不再适用于铝点焊。在更新系统并设计了所需的算法后,设计了诸如熔核熔深和熔深等参数。在铝焊接过程中获得的超声数据中可得到熔核直径。最后,设计了一个模糊系统来接收这些参数并确定焊接质量。

著录项

  • 作者单位

    University of Windsor (Canada).;

  • 授予单位 University of Windsor (Canada).;
  • 学科 Engineering Electronics and Electrical.;Physics Acoustics.;Engineering Automotive.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 158 p.
  • 总页数 158
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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