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Studies on pulsed Nd:YAG laser cutting of thick stainless steel in dry air and underwater environment for dismantling applications

机译:在干燥空气和水下环境中对厚不锈钢进行脉冲Nd:YAG激光切割的研究,用于拆卸应用

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Dismantling of old equipments and structures is an important application in nuclear facilities and shipping industry. This paper presents a study on process optimization during pulsed Nd:YAG laser cutting of thick stainless steel (AISI SS304) sheets having a thickness in the range of 4-20 mm in dry air and underwater environment. Laser cutting experiments have been performed using a 500 W average power long pulse Nd:YAG laser system with fiber optic beam delivery. A water shielded laser cutting nozzle with coaxial gas jet was specifically developed to form a local dry cavity around the laser beam during the cutting experiments in underwater condition. It was found that for a given pulse energy, a higher cutting speed is possible with optimal value of pulse duration, spot overlapping, and assist gas pressure. Cutting speed of 20 mm thick SS sample was enhanced to about three times by means of increase in pulse duration from 14 ms to 20 ms and reduction in the required spot overlapping from a value of 80% to 40% using oxygen as the assist gas. A comparison of the cutting speed and heat affected zone in dry air and underwater environment has been performed. These results will be highly useful in laser based dismantling of old steel structures in radioactive and underwater environment to save time and minimize radiation dose consumption as compared to conventional dismantling methods. (C) 2015 Elsevier Ltd. All rights reserved.
机译:拆除旧设备和结构是核设施和航运业的重要应用。本文介绍了在干燥空气和水下环境中对厚不锈钢(AISI SS304)薄钢板进行脉冲Nd:YAG激光切割时的工艺优化研究,该钢板的厚度在4-20 mm之间。已经使用具有光纤束传输的500 W平均功率长脉冲Nd:YAG激光系统进行了激光切割实验。在水下条件下的切割实验过程中,专门开发了带有同轴气体射流的防水激光切割喷嘴,以在激光束周围形成局部干燥腔。已经发现,对于给定的脉冲能量,以最佳的脉冲持续时间,斑点重叠和辅助气体压力值可以实现更高的切割速度。通过使用氧气作为辅助气体,将脉冲持续时间从14 ms增加到20 ms,并将所需的斑点从80%减小到40%,将20 mm厚SS样品的切割速度提高了大约三倍。在干燥空气和水下环境中,对切割速度和热影响区进行了比较。与传统的拆卸方法相比,这些结果在放射性和水下环境中的旧钢结构的基于激光的拆卸中将非常有用,以节省时间并最小化辐射剂量的消耗。 (C)2015 Elsevier Ltd.保留所有权利。

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