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Failure of a Residue Fluid Catalytic Cracker (RFCC) Catalyst Cooler's Aeration Piping System (Cat Cooler Internals)

机译:残留液催化饼干(RFCC)催化剂冷却器曝气管道系统的失效(猫冷却器内部)

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This paper explores the various degradation mechanisms experienced by a refinery's RFCC catalyst cooler aeration piping system. A detailed analysis of the most recent failure and a past failure was conducted to determine the various metallurgical and mechanical degradation mechanism(s) that led to these failures. The analysis which covered both the old UNS S30409, TP304H stainless steel, and newly upgraded UNS S34709, TP347H stainless steel catalyst cooler aeration piping system, with the same design, showed the dominant degradation mechanisms to be low cycle thermal fatigue and low cycle fatigue-creep for the TP304H and TP347H stainless steel aeration system's header and sub header. The TP304H aeration system failed after three years in-service and the TP347H aeration system after six months in-service. The proposed solutions to prevent recurrence include a design change of the aeration piping system, stricter quality control during fabrication, installation of liquid knock-out drums to prevent water ingress resulting in thermo-mechanical strains and a return to the TP304H metallurgy for the aeration system pending a detailed investigation into the TP347H failure. The paper also explores the technical reason(s) for the metallurgy upgrade from TP304H to TP347H and how this change affected the aeration piping's service life.
机译:本文探讨了炼油厂的RFCC催化剂冷却器曝气管道系统所经历的各种退化机制。对最新故障和过去的故障进行了详细分析,以确定导致这些故障的各种冶金和机械降解机制。具有相同设计的旧未S30409,TP304H不锈钢和新升级的UNS S34709,TP347H不锈钢催化剂凉爽曝气管道系统的分析表明,显着的降解机制是低循环热疲劳和低循环疲劳 - TP304H和TP347H不锈钢曝气系统的集管和子标题蠕动。 TP304H曝气系统在服务三年后失败,在六个月内六个月后的TP347H曝气系统。预防复发的提出的解决方案包括曝气管道系统的设计变化,在制造过程中更严格的质量控制,液体敲除鼓的安装,以防止水进入导致热机械菌株和曝气系统的TP304H冶金返回到TP304H冶金等待详细调查TP347H失败。本文还探讨了从TP304H到TP347的冶金升级的技术原因,以及这种变化如何影响通风管道的使用寿命。

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