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Failure analysis on two austenitic stainless steels applied in cyclone separators of catalytic cracking unit

机译:催化裂化装置旋风分离器中两种奥氏体不锈钢的失效分析

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摘要

In this paper, several experiment approaches to the macro-mechanical properties, micro-structural morphology, phase identification, etc. were used for the failure analysis on two austenitic stainless steels applied in cyclone separator of catalytic cracking unit. The results show that the damage of material (310Cb) applied in cyclone separators within second regenerator (CSSR) is more serious than the material (0Crl9Ni9) applied in cyclone separators within first regenerator (CSFR). The damage of CSSR is mainly manifested as material embrittlement so that fracture occurs. However, its main damage causes do not result from carburizing or sulfurizing, but the precipitation of harmful σ phases and Cr_(23)C_6 phases. Resulting in such phenomena, the internal cause is the high chromium (25 wt.%) of material, while external cause is the cyclone separators subjected to high temperature (>700 °C). It can be concluded that the material selection of CSSR is not more appropriate than CSFR. Assuming that the CSSR has the same lifetime as CSFR through taking some measures, the lifetime of the whole set regenerating system can be extended a lot. Because the main causes of failure are recognized, the corresponding measures to improve the lifetime of the whole set regenerating system can be given.
机译:本文针对催化裂化装置旋风分离器中使用的两种奥氏体不锈钢,采用宏观力学性能,微观组织形态,相识别等多种实验方法进行了失效分析。结果表明,第二再生器(CSSR)中旋风分离器中使用的材料(310Cb)比第一再生器(CSFR)中旋风分离器中使用的材料(0Crl9Ni9)损坏更严重。 CSSR的损坏主要表现为材料脆化从而发生断裂。但是,其主要破坏原因不是渗碳或硫化,而是有害的σ相和Cr_(23)C_6相的析出。导致这种现象的原因是内部原因是材料中的铬含量高(25 wt。%),而外部原因是旋风分离器受到高温(> 700°C)的影响。可以得出结论,CSSR的材料选择并不比CSFR更合适。通过采取一些措施,假设CSSR的寿命与CSFR相同,则整个再生系统的寿命可以大大延长。因为已经认识到故障的主要原因,所以可以给出相应的措施来提高整套再生系统的寿命。

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