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Underwater cutting technology of thick stainless steel with YAG laser

机译:YAG激光厚不锈钢水下切割技术

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In nuclear power plants, irradiated materials like Control Rod (CR) should be stored underwater after service. Due to reducing the storage space, underwater cutting technology is expected. In this study, we developed underwater cutting technology of thick stainless steel with YAG laser in order to cut used CR. Preliminary tests were preformed with flat plate test-pieces to optimize the curling conditions. Due to creating a local dry area between nozzle and test-piece, high-pressure air was blown from the nozzle. Underwater laser cutting was carried out by laser irradiation power of 4kW, changing the parameters of cutting speed, distance between the nozzle and test-piece, and thickness of the test-piece. We also investigated the wastes like dross and aerosols by laser cutting. Amount of dross was approximately 0.1kg/m after cutting a 14mm thick stainless steel plate, which is estimated to be less than other cutting method. Based on these results, we developed underwater cutting system of CR test-piece with YAG laser as a mock-up test. In the cutting torch, there was tracking system was introduced to keep the distance between the nozzle and the test-piece constant, and cutting monitor was also set-in to detect whether the test-piece was successfully cut or not. We have already tried to cut the CR test-piece with this facility and successfully cut in half.
机译:在核电站,辐照材料如控制杆(CR)应在施用之后储存。由于减少了存储空间,预期水下切割技术。在这项研究中,我们开发了厚不锈钢的水下切割技术,与YAG激光器以切割使用的Cr。用平板试验片预制初步试验以优化卷曲条件。由于在喷嘴和试件之间产生局部干燥区域,从喷嘴吹出高压空气。通过4kW的激光照射功率进行水下激光切割,改变切割速度的参数,喷嘴与试验片之间的距离,以及试件的厚度。我们还通过激光切割调查了像渣滓和气溶胶这样的废物。切割14mm厚的不锈钢板后,渣滓的量约为0.1kg / m,估计比其他切削方法小于其他切削方法。基于这些结果,我们开发了CR试验片的水下切割系统,用YAG激光作为模拟试验。在切割炬中,引入了跟踪系统以保持喷嘴和试件常数之间的距离,并且还设定了切割监视器以检测试验片是否成功切割。我们已经尝试用这个设施切割CR试验片,并成功切成两半。

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