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Why is in situ quality control of laser keyhole welding a real challenge?

机译:为什么激光锁孔焊接的现场质量控制是真正的挑战?

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In this work, we investigated keyhole welding including the pore dynamics (creation and collapse) of aluminium at the European Synchrotron Radiation Facility (ESRF, Grenoble, France). Optical back reflection and acoustic signals were simultaneously recorded during the welding process which was also visualized by high-speed X-ray imaging. This allows correlating the different momentary events with the signals recorded by the sensors. We demonstrate that keyhole welding is a highly dynamical and unstable process. In addition, to use either acoustic or optical sensors for pore detection, highly advance statistical methods such as machine learning are a requisite for signal processing.
机译:在这项工作中,我们研究了欧洲同步加速器辐射设施(ESRF,法国格勒诺布尔)的锁孔焊接,包括铝的孔隙动态(形成和塌陷)。在焊接过程中同时记录了光学背反射和声信号,这也可以通过高速X射线成像观察到。这允许将不同的瞬时事件与传感器记录的信号相关联。我们证明了锁孔焊接是一个高度动态且不稳定的过程。此外,要使用声波传感器或光学传感器进行孔隙检测,信号处理必须具备高度先进的统计方法,例如机器学习。

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