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Failure Analysis: Cracking at Reactor Exit Collector of Platforming Unit

机译:失效分析:站台反应堆出口收集器处开裂

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At December 2007 a leak was observed at second reactor R-4802 collector (2-1/4 Cr - 1 Mo), conveying the effluents to the 3rd furnace F-4803 of Semi-regenerating Platforming unit (Unit 048) of Petit Couronne Refinery - France. Metallurgical examination shows that cracking was initiated by a localized mechanism known as Creep Type IV at HAZ fine grain zone. Additional constraints produced by rest of refractory blocking also helped with the development of failure. Actions to avoid small grain size zone were recommended, as to use materials with control of the impurities, use of materials with addition of boron (90 to 130 ppm). Welding procedure was implemented considering pre-heating at 200°C and in terpass temperature up to 250°C and PWHT at 760°C during 1h /inch thickness. Also inspection actions were taking to assure the quality of repairs and recommendations were implemented in order to modify the design and avoid the blocking of furnace's tubular elements. Additionally on-site metallurgical examination was included as part of inspection plan.
机译:在2007年12月,在第二个反应堆R-4802收集器(2-1 / 4 Cr-1 Mo)处观察到泄漏,将废水输送到Petit Couronne炼油厂的半再生平台化装置(048号装置)的第三炉F-4803 - 法国。冶金检查表明,裂纹是由HAZ细晶粒区的一种局部蠕变IV型蠕变引发的。其余的耐火材料阻塞所产生的其他约束也有助于破坏的发展。建议采取措施避免出现小晶粒尺寸区域,因为要使用可控制杂质的材料,应使用添加硼(90至130 ppm)的材料。在进行焊接程序时要考虑到在1h /英寸厚度下在200°C的温度下预热和最高250°C的焊道温度以及760°C的PWHT。此外,还采取了检查措施以确保维修质量,并实施了建议,以修改设计并避免炉管的阻塞。另外,现场冶金检查也包括在检查计划中。

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