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Failure Analysis Of Flange Sealing Surface Of Outlet Pipeline Of Wax Oil Hydrogenation Reactor

机译:蜡油氢化反应器出口管道法兰密封面的故障分析

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Hydrogenation reactor is the core equipment of various hydrogenation units or hydrogenation processes. Because of the harsh service environment, the difficult manufacturing technology, the high requirements and the expensive cost, the safety of hydrogenation reactor is a very important problem. The outlet flange of hydrogenation reactor in a petrochemical company suddenly cracked after several years of use. The maximum depth of the crack from the sealing surface to the depth of the flange is 165 mm, the circumferential cracking range is about 130 degrees. The crack is in a circumferential and curved line along the sealing groove, and has small bifurcations at the tip. In order to ensure the safety of equipment operation and prevent the recurrence of this kind of accident, the causes of flange failure were systematically analyzed and the preventive measures are formulated. This paper reviewed the manufacturing quality data of the failed flange, and carried out a series of tests and analyses, such as macroscopic inspection, penetration testing, ultrasonic testing, mechanical properties test, chemical composition analysis, metallographic structure analysis, finite element stress check and so on. Combined with the use environment and the operation parameters of the flange, we preliminarily analyze that the cause of flange cracking may be manufacturing defects. In order to avoid the failure of flanges again, it is recommended that the flanges of the same batch should be tested one by one to ensure the safe and stable operation of the device.
机译:氢化反应器是各种加氢单元或氢化过程的核心设备。由于恶劣的服务环境中,很难制造技术,高要求和昂贵的成本,加氢反应器的安全性是一个非常重要的问题。加氢反应器在某石化公司的出口法兰使用几年后的突然破裂。从密封表面到凸缘的深度裂纹的最大深度为165mm,圆周裂化范围是大约130度。该裂纹是沿密封槽的周向的和弯曲的线,并具有在其前端的小分支。为了保证设备运行的安全性,并防止此类事故的再次发生,法兰失败的原因进行了系统的分析和预防措施制定。本文综述了失败凸缘的制造质量数据,并进行了一系列的测试和分析,例如宏观检查,渗透探伤,超声波探伤,力学性能测试,化学成分分析,金相结构分析,有限元应力检查和很快。与使用环境和法兰的运行参数相结合,我们初步分析认为法兰的原因破裂,可以制造缺陷。为了避免再次法兰的失败,建议同一批次的法兰应测试一个接一个,以确保设备的安全稳定运行。

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