首页> 外文会议>Laser Materials Processing Conference ICALEO 2000, Oct 2-5, 2000, Dearborn, MI USA >Laser De-sensitization Treatment for Inside Surface of SUS304 Stainless Steel Pipe Welds in Nuclear Power Plants
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Laser De-sensitization Treatment for Inside Surface of SUS304 Stainless Steel Pipe Welds in Nuclear Power Plants

机译:核电站SUS304不锈钢管焊缝内表面的激光脱敏处理。

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A technology to prevent the occurrence of Intergranular Stress Corrosion Cracking (IGSCC) by irradiating a high power Nd:YAG laser beam was developed. Laser De-sensitization Treatment (LDT) process was realized by irradiating a laser beam onto the sensitized Heat Affected Zone (HAZ) surface of SUS304 stainless steel. LDT was formed by both a molten layer of approximately 0.2mm depth and a solution heat treated layer. The results of a Creviced Bent Beam (CBB) test showed that no cracks had appeared on the surface of LDT. After LDT was applied in the vicinity of welding joints on the inside surface of pipes, tensile residual stress was measured there. On the other hand, the tensile stress of outside surface of the pipes was decreased. From these results, LDT processing on the inside surface of a pipe can be expected to prevent the occurrence of IGSCC owing to the effect of both metallurgical improvement and decrease of the residual stress on the outside surface of the pipe. We developed the LDT processing system and successfully applied on the pipes of some actual nuclear power plants.
机译:开发了一种通过照射高功率Nd:YAG激光来防止晶间应力腐蚀开裂(IGSCC)的技术。激光脱敏处理(LDT)工艺是通过将激光束照射到SUS304不锈钢的敏化热影响区(HAZ)表面上来实现的。 LDT由约0.2mm深度的熔融层和固溶热处理层形成。弯曲弯梁(CBB)测试的结果表明LDT表面没有出现裂纹。在管道内表面的焊接接头附近施加LDT后,在那里测量了拉伸残余应力。另一方面,管子外表面的拉应力减小了。根据这些结果,由于冶金学上的改进和管子外表面上残余应力的降低,可以预期在管子内表面上进行LDT处理以防止发生IGSCC。我们开发了LDT处理系统,并成功应用于一些实际核电站的管道上。

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