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Multiphysics simulation of the resistance spot welding detection using electromagnetic ultrasonic transverse wave

机译:电磁超声横波电阻点焊检测的多私人仿真

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摘要

Resistance spot welding (RSW) quality substantially influences the autobody's mechanical properties and safety performance. Nondestructive testing (NDT) method is widely used to evaluate the quality of RSW, but the traditional ultrasonic testing method has high requirements for coupling conditions and flat surface of the weld part. The electromagnetic acoustic transducer (EMAT) is a novel NDT technology, which has advantages of noncontact, no coupling media, and low requirements for surface flatness of the workpiece. Therefore, the electromagnetic ultrasonic transverse wave (EUTW) is developed to realize the evaluation of RSW quality in this paper. Under the COMSOL platform, the finite element method (FEM) modeling is proposed by multiphysics simulation. The multiphysical fields include electromagnetic field, acoustic field, and solid mechanics. The generation mechanism and propagation rules of EUTW in various spot welds are studied by simulation analysis. The correctness of FEM modeling is validated by EUTW experiments; results show that the experimental waveforms of EUTW are consistent with the simulation waveforms. Finally, an evaluation method of the nugget size of RSW is proposed based on the simulation and experiments analysis of EUTW detection of RSW with different nugget diameter and indentation depth. The approach presented in this paper can provide the theoretical foundation and new method for the noncontact, high efficient, and low-cost detection of RSW quality of the autobody.
机译:电阻点焊(RSW)质量大大影响了自动体的机械性能和安全性能。无损检测(NDT)方法广泛用于评估RSW的质量,但传统的超声波检测方法具有高要求焊接条件和焊接部件的平坦表面。电磁声换能器(EMAT)是一种新型NDT技术,具有非接触,无耦合介质的优点,以及工件表面平坦度的低要求。因此,开发了电磁超声横向波(EUTW)以实现本文对RSW质量的评估。在COMSOL平台下,有限元方法(FEM)建模由多体仿真提出。多体形领域包括电磁场,声场和固体力学。通过模拟分析研究了各种点焊中Eutw的产生机制和传播规则。 Eutw实验验证了有限元建模的正确性;结果表明,EUTW的实验波形与模拟波形一致。最后,基于具有不同块直径和压痕深度的RSW的Eutw检测的模拟和实验分析,提出了RSW的掘金尺寸的评估方法。本文介绍的方法可以为自动侵害的RSW质量的不接触,高效和低成本检测提供理论基础和新方法。

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