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首页> 外文期刊>Journal of Nondestructive Evaluation >Non-destructive Testing of Paint Coatings on Steel Plates by Ultrasonic Reflectometry
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Non-destructive Testing of Paint Coatings on Steel Plates by Ultrasonic Reflectometry

机译:超声波反射法对钢板涂料的无损检测

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An ultrasonic reflectometry method has been used successfully to detect elasticity changes following the curing of 100 m thick epoxy films (DGEBA-PAA) coated onto 1.5 mm thick steel plates. The method employs a goniometric apparatus to measure the reflection coefficient amplitude around 5 MHz followed by a standard FFT analysis of the reflected signal. A specific ultrasonic wave mode was identified which was dependent on, and correlated with, the presence of the coating layer. The goniometer angle associated with this mode was different from that associated with Lamb modes of the plate, enabling the new mode to be detected reliably. The sensitivity of the new mode to variations in the paint mass density, longitudinal and transverse velocities and thickness has been quantified numerically by using Brekhovskikh's model with due account taken of the finite width of the ultrasonic fields of the transducers. The method was tested for the detection of the evolution of the coating elasticity during curing at 80 C for 400 h. Compensation was applied to correct for the effect of the natural swelling of the paint layer on the angular position of the tracked mode, and this was validated experimentally. The evolution of the angular position was found to offer a reliable means to detect elasticity changes during the cure of the coating. The mass density variation in the coating during cure only weakly affected the angular position. This method will provide a promising tool for the non destructive evaluation of paint coatings, particularly in service for the detection of ageing effects in the longer term.
机译:超声波反射法已成功用于检测固化在1.5 mm厚钢板上的100 m厚环氧膜(DGEBA-PAA)固化后的弹性变化。该方法采用测角仪来测量5 MHz附近的反射系数幅度,然后对反射信号进行标准FFT分析。确定了特定的超声波模式,该模式取决于涂层的存在并与之相关。与该模式关联的测角计角度与与板的Lamb模式关联的测角计角度不同,从而能够可靠地检测到新模式。通过使用布雷霍夫斯基模型,在适当考虑换能器超声场的有限宽度的情况下,已通过数值量化了新模式对涂料质量密度,纵向和横向速度以及厚度变化的敏感性。测试该方法以检测80℃固化400小时期间涂层弹性的变化。应用补偿来校正涂料层的自然膨胀对跟踪模式的角位置的影响,并通过实验进行了验证。发现角位置的变化为检测涂层固化过程中的弹性变化提供了可靠的手段。固化过程中涂层的质量密度变化仅对角位置产生微弱影响。该方法将为油漆涂料的无损评估提供有希望的工具,特别是在长期检测老化效果方面。

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