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Non-Destructive Evaluation of Laser Welds in Tailor-Welded Blanks Using Magnetic Flux Leakage (1304)

机译:使用磁通量泄漏对拼焊毛坯中的激光焊接进行无损评估(1304)

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摘要

The tailor-welded blank (TWB) industry, which uses laser welding exclusively, is facing higher demands on quality assurance, both internally to raise efficiency of production lines and externally from their customers (predominantly auto makers). This paper introduces a novel, economical approach to TWB inspection, which employs the principle of magnetic flux leakage (MFL). The development of a laboratory-based MFL inspection tool for TWBs is presented. The effects of inspection system operating parameters are quantified to allow for optimized and robust performance. The operating parameters examined include applied magnetic field strength, scanning velocity, and sampling resolution. The ability of the MFL technique to detect defects that occur in the production environment from CO CO2 and Nd:YAG welds is clearly demonstrated. Defects include porosity, missed weld, pinholes, mismatch, concavity, and convexity. The issues of robustness and reliability surrounding the implementation of an industrial MFL inspection tool are addressed and suitable recommendations for further development are made.
机译:专用焊接坯料(TWB)行业仅使用激光焊接,因此在内部提高生产线效率以及在外部(主要是汽车制造商)外部都面临着更高的质量保证要求。本文介绍了一种新颖,经济的TWB检查方法,该方法采用了磁通量泄漏(MFL)原理。介绍了基于实验室的TWB的MFL检查工具的开发。量化检查系统操作参数的影响,以实现优化和强大的性能。检查的操作参数包括施加的磁场强度,扫描速度和采样分辨率。清楚地证明了MFL技术能够检测生产环境中CO CO2和Nd:YAG焊缝中出现的缺陷的能力。缺陷包括孔隙率,漏焊,针孔,不匹配,凹度和凸度。解决了围绕工业MFL检查工具实施的鲁棒性和可靠性问题,并提出了进一步开发的适当建议。

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