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Laser Lock-in Thermography for Fatigue Crack Detection

机译:激光锁定热成像技术,用于疲劳裂纹检测

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This study proposes a new nondestructive evaluation methodology named laser lock-in thermography (LLT) for fatigue crack detection. LLT utilizes a high power continuous wave (CW) laser as a heat generation source for lock-in thermography instead of commonly used flash and halogen lamps. The advantages of the proposed LLT method are that (1) the laser heat source can be positioned at an extended distance from a target structure thank to the directionality and low energy loss of the laser source, (2) thermal image degradation due to surrounding temperature disturbances can be minimized because of high temperature gradient generated by the laser source and (3) a large target surface can be inspected using a scanning laser heat source. The developed LLT system is composed of a modulated high power CW laser, galvanometer and infrared camera. Then, a holder exponent-based data processing algorithm is proposed for intuitive damage evaluation. The developed LLT is employed to detect a micro fatigue crack in a metal plate. The test result confirms that 5 μm (or smaller) fatigue crack in a dog-bone shape aluminum plate with a dimension of 400 × 140 × 3 mm~3 can be detected.
机译:这项研究提出了一种新的非破坏性评估方法,称为激光锁定热成像(LLT),用于疲劳裂纹检测。 LLT使用高功率连续波(CW)激光器作为锁定热成像的热源,而不是通常使用的闪光灯和卤素灯。提出的LLT方法的优点是(1)由于激光源的方向性和低能量损耗,可以将激光热源放置在距目标结构较远的位置,(2)由于周围温度而导致的热图像劣化由于激光源产生的高温梯度,可以最大程度地减少干扰,并且(3)可以使用扫描激光热源检查较大的目标表面。研发的LLT系统由调制大功率连续波激光器,检流计和红外热像仪组成。然后,提出了一种基于持有人指数的数据处理算法,用于直观的损伤评估。开发的LLT用于检测金属板上的微疲劳裂纹。测试结果证实,在尺寸为400×140×3 mm〜3的狗骨形铝板中,可以检测到5μm(或更小)的疲劳裂纹。

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