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Acoustic thermography using an uncooled high speed camera and low power ultrasonic excitation: test system and its application to impact flaw detection in CFRP

机译:使用非冷却高速相机和低功率超声激发进行声热成像:测试系统及其在CFRP中探伤的应用

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摘要

Acoustic thermography is a relatively new NDE method based on thermographic detection of dissipated ultrasonic energy. The system presented uses an uncooled high-speed camera and low power ultrasonic excitation. This technology is characterized by low system costs, since no nitrogen or Stirling cooling is necessary. Low power applications are facilitated by efficient ultrasonic coupling, hence taking care of sensitive objects. A camera has been developed which uses a 384 x 288 pixels micro-bolometer array as sensor and may record up to 100 frames per second. The advantages of this system are demonstrated on a set of carbon fiber reinforced plastic (CFRP) plates damaged by impacts of various strengths. The impact flaws consisting of fiber fractures and delaminations can be detected while transmitting low ultrasonic energy of only about 1.3 W to the specimen.
机译:声波热成像技术是一种相对较新的NDE方法,其基于热成像技术检测耗散的超声能量。展示的系统使用了未冷却的高速相机和低功率超声激励。该技术的特点是系统成本低,因为不需要氮气或斯特林冷却。高效的超声耦合有助于低功率应用,因此可以保护敏感物体。已经开发出使用384 x 288像素的微辐射热计阵列作为传感器的相机,并且每秒可以记录多达100帧。该系统的优势在一组因各种强度的冲击而损坏的碳纤维增强塑料(CFRP)板上得到了证明。可以检测到由纤维断裂和分层引起的冲击缺陷,同时仅向样品传输仅约1.3 W的低超声能量。

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