Li Tianchi, Mo Zengliang, Chen Qi, Zhou Jia, Cao Zhi, Guo Jianhua, Yang Zhongyuan, Tang Chunwei, Zhang Hongmei, Xiao Tao, Li Wensi, Ming Yuzhou, Liu Fang, Yan Taihong, Mi Gaoyang, Zheng Weifang
China Institute of Atomic Energy, P. O. Box 275 (26), Beijing, 102413, China.
GZ Photonics Technology Co., Ltd, Dongguan, 523808, China.
Sci Rep. 2024 Nov 27;14(1):29437. doi: 10.1038/s41598-024-81161-z.
The cladding of fast reactor fuel rods, made of stainless steel, presents significant challenges in cutting due to its ductility, which leads to increased tool wear and poor cut quality with traditional mechanical methods. Laser cutting has emerged as a superior alternative, offering non-contact precision, high efficiency, and suitability for radioactive environments. This study systematically investigates the effects of laser cutting parameters-cutting speed, focal position, power, and gas pressure-on the cutting quality of simulated fast reactor fuel rods. The results show that optimal cutting is achieved with a cutting speed of 1 m/min, a focal position between - 20 and - 25 mm, a laser power between 7200 and 9600 W, and a gas pressure of 10 MPa. These parameters provide the best balance between cutting efficiency, surface roughness, and minimal slag formation. This study contributes valuable insights into optimizing laser cutting technology for nuclear fuel rod processing, with potential applications in fuel reprocessing and decommissioning.
快堆燃料棒的包壳由不锈钢制成,由于其延展性,在切割时面临重大挑战,这会导致刀具磨损加剧,且传统机械方法的切割质量较差。激光切割已成为一种更优的选择,具有非接触式精密切割、高效以及适用于放射性环境等特点。本研究系统地探究了激光切割参数——切割速度、焦点位置、功率和气体压力——对模拟快堆燃料棒切割质量的影响。结果表明,切割速度为1米/分钟、焦点位置在-20至-25毫米之间、激光功率在7200至9600瓦之间以及气体压力为10兆帕时可实现最佳切割效果。这些参数在切割效率、表面粗糙度和最小熔渣形成之间提供了最佳平衡。本研究为优化核燃料棒加工的激光切割技术提供了有价值的见解,在燃料后处理和退役方面具有潜在应用。