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Comparison between Microwave Infrared Thermography and CO2 Laser Infrared Thermography in Defect Detection in Applications with CFRP

机译:碳纤维增强塑料应用中的微波红外热成像和二氧化碳激光红外热成像在缺陷检测中的比较

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This paper presents two infrared thermography methods with CO2 Laser excitation and microwave excitation applied to defect detection in CFRP. The tests were conducted with two specimens, one with defect, and another one without defect. On two concrete plates 40 cm× 40 cm× 4.5 cmwere reinforced by CFRP; the defects were made by the absence of adhesive on an area10 cm× 10 cm. The specimens were heated by microwave, generated by a commercial magnetron of 2.45 GHz and guided by a pyramidal horn antenna, with a power of 360 W within 150 s. Another series of the tests was conducted with CO2 Laser, wavelength 10.6 μm, by heating the samples with a power of 300 W within 40 s. An infrared camera sensitive to medium waves in range of 3 - 5 μm, with a detector of 320 × 256 matrix detector in InSb (Indium Antimonide), was used to record the thermograms. As a result, the CO2 Laser excitation is better for the delamination detection in CFRP. This study opens interesting perspectives for inspecting other types of defects in materials sciences; the microwave excitation is suitable for the deep defects in the materials whereas the CO2 Laser excitation is better for the defects near the surface of the materials.
机译:本文介绍了两种CO2激光激发和微波激发红外热成像方法,用于CFRP中的缺陷检测。测试是用两个样本进行的,一个样本有缺陷,另一个样本无缺陷。在两块40 cm×40 cm×4.5 cm的混凝土板上用CFRP加固;缺陷是由于在10 cm×10 cm的区域没有粘合剂而造成的。样品由微波加热,微波由2.45 GHz的商用磁控管产生,并由角锥天线引导,在150 s内具有360 W的功率。使用波长为10.6μm的CO2激光,通过在40 s内以300 W的功率加热样品,进行了另一系列的测试。使用对Insb(锑化铟)中的320×256矩阵检测器的,对3-5μm中波敏感的红外热像仪来记录温度记录图。结果,对于CFRP中的分层检测,CO2激光激发更好。这项研究为检查材料科学中的其他类型的缺陷提供了有趣的观点。微波激发适合于材料中的深层缺陷,而CO2激光激发更适合于材料表面附近的缺陷。

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