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首页> 外文期刊>Optics and Lasers in Engineering >Performance optimization of water-jet assisted underwater laser cutting of AISI 304 stainless steel sheet
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Performance optimization of water-jet assisted underwater laser cutting of AISI 304 stainless steel sheet

机译:AISI 304不锈钢薄板水刀辅助水下激光切割的性能优化

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Recent development of water-jet assisted underwater laser cutting has shown some advantages over the gas assisted underwater laser cutting, as it produces much less turbulence, gas bubble and aerosols, resulting in a more gentle process. However, this process has relatively low efficiency due to different losses in water. Scattering is reported to be a dominant loss mechanism, which depends on the growth of vapor layer at cut front and its removal by water-jet. Present study reports improvement in process efficiency by reducing the scattering loss using modulated laser power. Judicious control of laser pulse on- and off-time could improve process efficiency through restricting the vapor growth and its effective removal by water-jet within the laser on- and off-time, respectively. Effects of average laser power, duty cycle and modulation frequency on specific energy are studied to get an operating zone for maximum efficiency. Next, the variation in laser cut quality with different process parameters are studied within this operating zone using Design of experiment (DOE). Response surface methodology (RSM) is used by implementing three level Box-Behnken design to optimize the variation in cut quality, and to find out the optimal process parameters for desired quality. Various phenomena and material removal mechanism involved in this process are also discussed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:水喷射辅助水下激光切割的最新发展已显示出优于气体辅助水下激光切割的一些优势,因为它产生的湍流,气泡和气溶胶要少得多,从而使加工过程更加温和。然而,由于水的不同损失,该方法的效率相对较低。据报道,散射是主要的损失机制,这取决于切割前蒸汽层的生长以及通过喷水将其去除。本研究报告通过使用调制激光功率降低散射损耗来提高工艺效率。分别控制激光脉冲的开启和关闭时间,可以分别限制蒸气的生长和通过水刀有效去除水汽,从而有效地控制激光脉冲的开启和关闭时间。研究平均激光功率,占空比和调制频率对比能量的影响,以获得最大效率的工作区。接下来,使用实验设计(DOE)在此操作区域内研究不同工艺参数下激光切割质量的变化。通过实施三级Box-Behnken设计来使用响应面方法(RSM),以优化切割质量的变化,并找出所需质量的最佳工艺参数。还讨论了此过程涉及的各种现象和材料去除机理。 (C)2016 Elsevier Ltd.保留所有权利。

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