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Control of chaos in laser-induced vapor capillaries

机译:控制激光诱导的蒸气毛细管中的混沌

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Vapor capillaries associated with deep penetration laser welding (keyholes) are inherently unstable and it is well known that the bounded evolution of unstable modes of nonlinear dynamic systems can lead to complex fluctuations of state and/or output variables. In the case of keyholes, the magnitude of self-induced fluctuations is sometimes large enough to cause occasional closure ("collapse") and trapping of voids in the solidifying weld metal. Since voids are serious and frequent defects in partial penetration laser welds, methods to improve the stability of the keyhole, and thereby reduce or eliminate their incidence are of considerable practical interest. One technique that is known to simplify the complicated behavior of chaotic systems involves the application of periodic perturbations to accessible system inputs or boundaries. Consequently, this work investigated the effect of power modulation on porosity formation in laser welds. Frozen glycerin was used as the medium for welding since its transparency allowed visualization of the keyhole, facilitating control parameter development. Statistical and spectral analysis of penetration depth signals for the uncontrolled system was performed to characterize the nonlinear keyhole dynamics. In the control studies, it was found that the optimum frequency of power modulation at 400 Hz was very effective for reducing porosity. A 15° leading beam incidence angle was found to provide further improvements. Three-dimensional phase portraits of the keyhole depth for uncontrolled and controlled signals showed that the control did not convert depth fluctuations to a completely predictable limit cycle but that the remaining fluctuations were more predictable than those of the uncontrolled system.
机译:与深熔激光焊接(锁孔)相关的蒸汽毛细管本质上是不稳定的,众所周知,非线性动态系统的不稳定模式的有界演化会导致状态和/或输出变量的复杂波动。在锁孔的情况下,自感应波动的幅度有时会大到足以引起偶发的闭合(“塌陷”)并在凝固的焊接金属中截留空隙。由于空隙是部分渗透激光焊接中的严重缺陷和常见缺陷,因此提高锁孔的稳定性从而减少或消除其发生率的方法具有相当大的实际意义。已知一种简化混沌系统复杂行为的技术涉及将周期性扰动应用于可访问的系统输入或边界。因此,这项工作研究了功率调制对激光焊接中孔隙形成的影响。冷冻甘油被用作焊接介质,因为其透明性允许可视化钥匙孔,从而有利于控制参数的开发。对非受控系统的穿透深度信号进行统计和频谱分析,以表征非线性锁孔动力学。在对照研究中,发现在400 Hz的功率调制的最佳频率对于降低孔隙率非常有效。发现15°前导光束入射角可提供进一步的改进。不受控制和受控制信号的钥匙孔深度的三维相图显示,控制系统并未将深度波动转换为完全可预测的极限环,但与未控制系统相比,其余波动更可预测。

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