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STUDY ON CARBURIZING INSPECTION OF CRACKING FURNACE TUBE USING ACOUSTIC EMISSION TECHNIQUE

机译:声发射技术研究裂化炉管的渗碳检查

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Large tube type fuel heating furnaces are important and essential equipments, which have a wide range of applications in the petroleum and chemical industry, and failure modes of the furnace tubes in them are mostly caused by carburizing. It is important to improve effective detection technology for the measure of the tube carburized layer thickness, as well as the research on the comprehensive performance of furnace tubes considering the impacts of different conditions. The specifications of Φ70 × 6 mm HP40Nb cracking furnace tube was studied by experiment method to evaluate the effectiveness of an acoustic emission (AE) technique, which used to measure the carburized layer thickness. In the experiment, many factors were taking into account, such as different carburizing time, the response of acoustic emission attenuation to the organization changes, the magnetic field changes, and additional stress which caused by carburization are considered. The results show that the short periods strong carburizing has obviously impacts in the changes of the organization and magnetic field of the cracking furnace tube, however, it has little contribution to the acoustic emission signal attenuation.
机译:大型管式燃料加热炉是重要的,必不可少的设备,在石油和化学工业中具有广泛的应用,其中的炉管失效模式主要是由渗碳引起的。改进有效的检测技术以测量管材渗碳层厚度,以及考虑不同条件的影响对炉管的综合性能进行研究,具有重要意义。通过实验方法研究了Φ70×6 mm HP40Nb裂化炉管的规格,以评估声发射(AE)技术的有效性,该技术用于测量渗碳层的厚度。在实验中,考虑了许多因素,例如渗碳时间不同,声发射衰减对组织变化的响应,磁场变化以及渗碳引起的附加应力。结果表明,短时强渗碳对裂解炉管组织和磁场的变化有明显的影响,但对声发射信号的衰减影响很小。

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