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Controlling the kerf properties of underwater laser cutting of stainless steel with 3 mm thickness using an Yb:YAG laser source in nuclear decommissioning processes

机译:使用YB:YB:YAG激光源在核退役过程中控制3毫米厚度的水下激光切割的Kerf性能

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For nuclear decommissioning, the formation of secondary wastes has to be avoided to minimize the need for water and air filtering. Aiming at the minimization of material loss at cutting assignments, this study deploys an Yb:YAG laser for the underwater laser cutting of AISI304 (SS304) stainless steel samples with a thickness of 3 mm used in a range from 2 to 4 kW. Compressed air and nitrogen are applied as the cutting gases with a maximum of 6 bar. For studying the generation of waste material in the surrounding water, the influence of the process parameters on the kerf properties has been studied. Therefore, the characteristics of the resulting kerfs, particularly the weight loss and the occurring dross, were categorized and classified with respect to the weight loss of the samples. Regarding the application of nuclear decommissioning, a weight loss of more than 95 % compared to conventional saw cutting was obtained due to the formation of adhering dross.
机译:对于核退役,必须避免形成二次废物以最小化水和空气过滤的需要。旨在最小化切割分配的材料损失,本研究部署了AISI304(SS304)不锈钢样品的水下激光切割的YB:YAG激光器,厚度为3mm,其范围为2至4 kW。压缩空气和氮气作为切割气体施加,最大为6巴。为了研究周围水中的废料产生,研究了过程参数对Kerf性质的影响。因此,对所得的Kerfs,特别是重量损失和发生的渣滓的特性被分类和分类,并分为样品的重量损失。关于核退役的施用,由于粘附渣滓,获得了与常规锯切切割相比超过95%的体重减轻。

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