热成像
材料科学
分层(地质)
复合材料
红外线的
碳纤维增强聚合物
纤维增强塑料
热导率
超声波传感器
开裂
复合数
光学
声学
构造学
生物
物理
古生物学
俯冲
作者
Yin Li,Wei Zhang,Zhengwei Yang,Jinyu Zhang,Sheng-Jie Tao
标识
DOI:10.1016/j.infrared.2016.01.019
摘要
Carbon fiber reinforced polymer (CFRP) after low-velocity impact is detected using infrared thermography, and different damages in the impacted composites are analyzed in the thermal maps. The thermal conductivity under pulse stimulation, frictional heating and thermal conductivity under ultrasonic stimulation of CFRP containing low-velocity impact damage are simulated using numerical simulation method. Then, the specimens successively exposed to the low-velocity impact are respectively detected using the pulse infrared thermography and ultrasonic infrared thermography. Through the numerical simulation and experimental investigation, the results obtained show that the combination of the above two detection methods can greatly improve the capability for detecting and evaluating the impact damage in CFRP. Different damages correspond to different infrared thermal images. The delamination damage, matrix cracking and fiber breakage are characterized as the block-shape hot spot, line-shape hot spot, and “” shape hot spot respectively.
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