首页> 外文会议>14th International Conference on Nuclear Engineering 2006(ICONE14) vol.1 >DEVELOPMENT OF RESIDUAL STRESS IMPROVEMENT FOR NUCLEAR PRESSURE VESSEL INSTRUMENTATION NOZZLE WELD JOINT (P-43+P-8) BY MEANS OF INDUCTION HEATING
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DEVELOPMENT OF RESIDUAL STRESS IMPROVEMENT FOR NUCLEAR PRESSURE VESSEL INSTRUMENTATION NOZZLE WELD JOINT (P-43+P-8) BY MEANS OF INDUCTION HEATING

机译:感应加热法开发核压容器注水焊缝(P-43 + P-8)残余应力的方法

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As a counter measurement of intergranular stress corrosion cracking (IGSCC) in boiling water reactors, the induction heating stress improvement (IHSI) has been developed as a method to improve the stress factor, especially residual stresses in affected areas of pipe joint welds. In this method, a pipe is heated from the outside by an induction coil and cooled from the inside with water simultaneously. By thermal stresses to produce a temperature differential between the inner and outer pipe surfaces, the residual stress inside the pipe is improved compression.rnIHSI had been applied to weld joints of austenitic stainless steel pipes (P-8+P-8). However IHSI had not been applied to weld joints of nickel-chromium-iron alloy (P-43) and austenitic stainless steel (P-8). This weld joint (P-43+P-8) is used for instrumentation nozzles in nuclear power plants' reactor pressure vessels. Therefore for the purpose of applying IHSI to this one, we studied the following.rnⅰ) Investigation of IHSI conditions (Essential Variables)rnⅱ) Residual stresses after IHSIrnⅲ) Mechanical properties after IHSIrnThis paper explains that IHSI is sufficiently effective in improvement of the residual stresses for this weld joint (P-43+P-8), and that IHSI does not cause negative effects by results of mechanical properties, and IHSI is verified concerning applying it to this kind of weld joint.
机译:作为对沸水反应堆中晶间应力腐蚀开裂(IGSCC)的对策,已开发出感应加热应力改善(IHSI)作为改善应力因子(尤其是管道接头焊缝受影响区域中的残余应力)的方法。在这种方法中,管道通过感应线圈从外部加热,并同时从内部用水冷却。通过热应力在管道内外表面之间产生温差,改善了管道内的残余应力。rnIHSI已应用于奥氏体不锈钢管道(P-8 + P-8)的焊接接头。但是,IHSI尚未应用于镍铬铁合金(P-43)和奥氏体不锈钢(P-8)的焊接接头。该焊接接头(P-43 + P-8)用于核电站反应堆压力容器中的仪表喷嘴。因此,为了将IHSI应用于该模型,我们进行了以下研究。rnⅰ)研究IHSI条件(基本变量)rnⅱ)IHSI之后的残余应力rnⅲ)IHSIrn之后的力学性能本文解释说,IHSI在改善残余应力方面足够有效对于这种焊接接头(P-43 + P-8),IHSI不会因机械性能的结果而产生负面影响,并且已验证了将IHSI应用于此类焊接接头。

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