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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Sensitization behaviour of modified 316N and 316L stainless steel weld metals after complex annealing and stress relieving cycles
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Sensitization behaviour of modified 316N and 316L stainless steel weld metals after complex annealing and stress relieving cycles

机译:复杂的退火和应力消除循环后,改性316N和316L不锈钢焊接金属的敏化行为

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摘要

Sensitization behaviour of austenitic stainless steel weld metals prepared using indigenously developed modified 316N (C = 0.05%; N = 0.12%) and 316L (C = 0.02%; N = 0.07%) electrodes was studied. Detailed optical and scanning electron microscopic examination was carried out to understand the microstructural changes occurring in the weld metal during isothermal exposure at various temperatures ranging from 500 degrees C to 850 degrees C (773-1123 K). Based on these studies the mechanism of sensitization in the austenite-ferrite weld metal has been explained. Time-temperature-sensitization (TTS) diagrams were established using ASTM A262 Practice E test. From the TTS diagrams, critical cooling rate (CCR) above which there is no risk of sensitization was calculated for both materials. The heating/cooling rates to be followed for avoiding sensitization during heat treatment cycles consisting of solution-annealing and stress-relieving in fabrication of welded components of AIR 316LN stainless steel (SS) were estimated taking into account the soaking time and the number of times the component undergoes thermal excursions in the sensitization regime. The results were validated by performing controlled heating and cooling heat treatment trials on welded specimens. (c) 2006 Elsevier B.V. All rights reserved.
机译:研究了使用本地开发的改良316N(C = 0.05%; N = 0.12%)和316L(C = 0.02%; N = 0.07%)焊条制备的奥氏体不锈钢焊接金属的敏化行为。进行了详细的光学和扫描电子显微镜检查,以了解在温度范围从500摄氏度到850摄氏度(773-1123 K)的等温暴露过程中焊缝金属中发生的显微组织变化。基于这些研究,已经解释了奥氏体-铁素体焊接金属中敏化的机理。使用ASTM A262 Practice E测试建立了时间-温度-敏化(TTS)图。从TTS图表中,计算出两种材料的临界冷却速率(CCR),在该速率以上没有致敏风险。估算了AIR 316LN不锈钢(SS)焊接零件制造过程中为避免固溶退火和消除应力而在热处理循环中应避免的加热/冷却速率,并考虑了保温时间和次数组件在敏化方案中经历了热偏移。通过对焊接样品进行受控的加热和冷却热处理试验来验证结果。 (c)2006 Elsevier B.V.保留所有权利。

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