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Acoustic emission as a technique to study hydrogen induced cracking behavior of low-carbon steel

机译:声发射作为研究氢诱导低碳钢开裂行为的技术

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The strength loss resulting from hydrogen induced cracking (HIC) has been known to cause several serious failures in refineries and other plants. The study of this cracking mode using only electrochemical techniques is not fully efficient for the detection and control on line of this phenomenon. The technique using acoustic emission (AE) to detect defects in pressure vessels on line has been significantly developed in recent years. In order to investigate the effect of HIC degree on AE behavior of steel used in pressure vessel, specimens made of low-carbon steel was immersed in the H2S-saturated solution at 313k temperature for different time and their metallographic structure were examined after hydrogen charging. The AE signals showed that the corrosion process can be detected through AE testing and with the increase of the HIC developing, the totally AE activity increased during hydrogen charging. The AE signals of HIC can be divided into gestation stages and cracking stages, which can be either from the FeS film forming and breaking, or the development and evolution of hydrogen bubbles formed inside blisters during H2S corrosion, and the micro cracks on grain boundaries. The exact feature of AE sources within hydrogen blisters is not identified clearly, but the results demonstrate that an acoustic emission technique can be used to detect and even real time monitor the occurrence of such phenomena.
机译:众所周知,氢致裂化(HIC)引起的强度损失会导致炼油厂和其他工厂发生数次严重故障。仅使用电化学技术来研究这种裂化模式对于在线检测和控制该现象并不完全有效。近年来,使用声发射(AE)检测在线压力容器中的缺陷的技术已经得到了很大的发展。为了研究HIC程度对压力容器用钢的AE行为的影响,将低碳钢制成的试样在313k温度下浸入H 2 S饱和溶液中不同的时间和时间。充氢后检查其金相结构。 AE信号表明,可以通过AE测试来检测腐蚀过程,并且随着HIC的增加,在充氢过程中总AE活性增加。 HIC的AE信号可分为孕育期和破裂期,这可能是由于FeS膜的形成和破裂,或者是H 2 S腐蚀过程中水泡内部形成的氢气泡的发展和演变。 ,以及晶界上的微裂纹。氢水泡中AE源的确切特征尚不清楚,但结果表明,声发射技术可用于检测甚至实时监控此类现象的发生。

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