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Infrared thermography-based studies on hydrotesting of stainless steel pressure vessels

机译:基于红外热成像的不锈钢压力容器水压试验研究

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摘要

Non-destructive evaluation is essential for the safe and uninterrupted operation of pressure vessels. This study reports on infrared thermography-based online hydrotesting of three AISI type'304 stainless steel pressure vessels with simulated defects of 1.8 mm, 2.2 mm and 2.5 mm depths. The surface temperature rise of the defect and defect-free regions are remotely monitored using an infrared camera. It is observed that the temperature rise of the defect region is much higher compared to that of the defect-free regions and the normalised temperature difference monotonically increases with defect depth due to the higher stress concentration-induced faster rate of deformation. The rate of increase of the normalised temperature difference rapidly increases with defect depth and the rate is found to be linearly correlated with the normalised stress difference between the defect and defect-free regions. The ring-like hot-spot observed in the defect regions in the infrared images, prior to failure, corresponds to the circular morphology of the fabricated defects, and the circumference of the circular defects is identified as the most probable location for crack initiation. Contrast enhancement of the acquired infrared images is achieved using image processing algorithms. This study shows that infrared thermography can be effectively used for online monitoring of growing defects during hydrotesting of pressure vessels.
机译:无损评估对于压力容器的安全和不间断运行至关重要。这项研究报告了对三个AISI'304不锈钢压力容器进行基于红外热成像的在线水压测试,模拟缺陷深度分别为1.8 mm,2.2 mm和2.5 mm。缺陷和无缺陷区域的表面温度升高使用红外热像仪进行远程监控。可以看出,与无缺陷区域相比,缺陷区域的温升要高得多,归一化温度差会随着缺陷深度的增加而单调增加,这归因于较高的应力集中引起的更快的变形速度。归一化温度差的增加速率随着缺陷深度而迅速增加,并且发现该速率与缺陷和无缺陷区域之间的归一化应力差线性相关。在破坏之前,在红外图像中的缺陷区域中观察到的环状热点对应于所制造缺陷的圆形形态,并且圆形缺陷的周围被确定为裂纹萌生的最可能位置。使用图像处理算法可以增强获取的红外图像的对比度。这项研究表明,红外热成像可以有效地用于在线监测压力容器进行水压试验期间生长中的缺陷。

著录项

  • 来源
    《Insight》 |2015年第7期|406-413|共8页
  • 作者单位

    NDED, MMG, IGCAR, Kalpakkam, Tamil Nadu, 603102, India;

    NDED, MMG, IGCAR, Kalpakkam, Tamil Nadu, 603102,India;

    NDED, MMG,IGCAR, Kalpakkam, Tamil Nadu, 603102, India;

    Post Irradiation Examination Division (PIED), MMG, IGCAR, Kalpakkam, Tamil Nadu, 603102, India;

    Electromagnetic Measurements & Structural Integrity Section (EMSIS), NDED, MMG, IGCAR, Kalpakkam, Tamil Nadu, 603102, India;

    Metallurgy and Materials Group (MMG), Indira Gandhi Centre for Atomic Research(IGCAR), Kalpakkam, Tamil Nadu, 603102, India;

    Radiography and Thermography Section (RTS) and Smart Materials Section (SMARTS), Non-Destructive Evaluation Division (NDED), MMG, IGCAR, Kalpakkam, Tamil Nadu, 603102, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    infrared thermography; pressure vessels; hydrotesting; stress concentration; image processing;

    机译:红外热成像压力容器;水压试验应力集中图像处理;

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