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Fresnel absorption and inverse bremsstrahlung absorption in an actual 3D keyhole during deep penetration CO _2 laser welding of aluminum 6016

机译:铝6016的深熔CO _2激光焊接过程中实际3D锁孔中的菲涅耳吸收和反向致辐射

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摘要

An actual keyhole is captured by a high-speed camera during deep penetration laser welding of aluminum alloy 6016. With the help of spectrograph, plasma spectra are acquired, and then after Abel transformation, electron temperature is calculated. Through Lorenz nonlinear fitting, the FWHM of Stark broadening lines is obtained to compute electron density. To know more about the mechanism of deep penetration laser welding, both the effect of Fresnel absorption and inverse bremsstrahlung absorption of plasma on the laser power distribution is considered. Results indicate that electron temperature is very unstable in the keyhole which has a declining tendency in the radius direction, electron density increases in the depth direction while it does not change too much along radius. Laser intensity absorbed on the keyhole wall through Fresnel absorption is hardly uniform and distributes mainly on the front wall and the bottom of keyhole wall, and inverse bremsstrahlung absorption of keyhole plasma plays a dominant role in absorbing laser power compared with Fresnel absorption.
机译:在铝合金6016的深熔激光焊接过程中,高速相机会捕获实际的钥匙孔。借助光谱仪,获取等离子体光谱,然后在进行Abel变换后,计算电子温度。通过Lorenz非线性拟合,获得Stark加宽线的FWHM来计算电子密度。为了进一步了解深熔激光焊接的机理,同时考虑了菲涅耳吸收和等离子体的反向致辐射吸收对激光功率分布的影响。结果表明,钥匙孔内的电子温度非常不稳定,在半径方向上呈下降趋势,在深度方向上电子密度增加,而沿半径方向变化不大。通过菲涅耳吸收在匙孔壁上吸收的激光强度几乎不均匀,并且主要分布在匙孔壁的前壁和底部,并且与菲涅耳吸收相比,匙孔等离子体的逆致辐射吸收起着主导作用。

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