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Simultaneous high-speed x-ray transmission imaging and absolute dynamic absorptance measurements during high-power laser-metal processing

机译:高功率激光 - 金属加工过程中同时高速X射线传输成像和绝对动态吸收测量

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During high-power laser metal processing, the absorbed light is intimately related to the molten metal cavity shape. For the first time, this relationship is observed directly and simultaneously by implementing state-of-the-art techniques of high-speed x-ray imaging and integrating-sphere radiometry. Experiments were performed on Ti-6Al-4V solid and powder under single spot laser illumination for laser conditions that cause keyhole formation and collapse. The data from x-ray imaging corroborates that a dramatic rise in laser absorption is due to keyhole formation. We also find that the keyhole area correlates most strongly with energy absorption followed closely by keyhole depth. Furthermore, time synchronization reveals correlations between keyhole fluctuations and sinusoidal variations in energy absorption that occur during nominally "stable" keyhole conditions. Absorption data show a 24% periodic change in absorbed laser power at a 50 kHz frequency. The absorption peaks correlate to relatively large, open keyholes, whereas images taken at the troughs reveal keyholes with substantial undulations of the keyhole sidewalls. These observations give crucial, quantitative data for computational modeling whose aim is to predict porosity and defect formation.
机译:在高功率激光金属加工过程中,吸收光与熔融金属腔形密切相关。首次,通过实施高速X射线成像和集成球辐射测定的最新技术,直接和同时观察这种关系。在单点激光照射下对Ti-6Al-4V固体和粉末进行实验,用于导致锁孔形成和塌陷的激光条件。来自X射线成像的数据证实了激光吸收的显着升高是由于孔孔形成。我们还发现钥匙孔区域最强烈地与锁孔深度紧密相关的能量吸收。此外,时间同步显示锁孔波动与能量吸收中的正弦变化之间的相关性,其在名义上是“稳定”锁孔条件发生的。吸收数据显示在50kHz频率下吸收激光功率的24%周期性变化。吸收峰与相对较大的开口孔洞相关,而在槽处拍摄的图像揭示了具有锁孔侧壁的显着波动的钥匙孔。这些观察结果对于计算建模提供了至关重要的,定量数据,其目的是预测孔隙率和缺陷形成。

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