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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Keyhole formation and power deposition in Nd : YAG laser spot welding
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Keyhole formation and power deposition in Nd : YAG laser spot welding

机译:Nd:YAG激光点焊中的小孔形成和功率沉积

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The purpose of this work is to understand keyhole formation observed during pulse Nd:YAG laser welding. An analysis of the evolution of the keyhole geometry during a laser pulse was carried out by radiography x-ray flash, for tantalum and a titanium alloy target. From the images obtained by x-ray radiography, we determined the evolution of the geometry of the keyhole (depth and width) during the laser pulse. The keyhole appears after a delay, and increases linearly. We compare the measured creation delay with a value obtained by an analytical thermal model. We present a calculation of the energy deposit law by Fresnel absorption; the aim is to calculate the ray trajectory in the keyhole to deduce the local absorption. The absorption increases strongly during the formation of the keyhole, and tends towards a limit value. Further, we compare the mean absorption during a pulse with a measurement using a differential microcalorimeter. [References: 14]
机译:这项工作的目的是了解在脉冲Nd:YAG激光焊接过程中观察到的小孔形成。通过射线照相X射线闪光对钽和钛合金靶进行了激光脉冲期间锁孔几何形状的演变分析。从通过X射线射线照相获得的图像中,我们确定了激光脉冲期间锁孔的几何形状(深度和宽度)的演变。锁孔在延迟后出现,并呈线性增加。我们将测得的创建延迟与通过解析热模型获得的值进行比较。我们通过菲涅耳吸收来计算能量沉积定律。目的是计算钥匙孔中的射线轨迹以推导局部吸收。吸收在钥匙孔形成期间急剧增加,并趋于极限值。此外,我们将脉冲期间的平均吸收与使用微分热量计的测量结果进行了比较。 [参考:14]

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