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Superimpose methods for uncooled infrared camera applied to the micro-scale thermal characterization of composite materials

机译:非制冷红外相机叠加方法在复合材料微观尺度热表征中的应用

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The mobile type apparatus for a quantitative micro-scale thermography using a micro-bolometer was developed based on our original techniques such as an achromatic lens design to capture a micro-scale image in long-wave infrared, a video signal superimposing for the real time emissivity correction, and a pseudo acceleration of a timeframe. The total size of the instrument was designed as it was put in the 17 cm × 28 cm × 26 cm size carrying box. The video signal synthesizer enabled to record a direct digital signal of monitoring temperature or positioning data. The encoded digital signal data embedded in each image was decoded to read out. The protocol to encode/decode the measured data was originally defined. The mixed signals of IR camera and the imposed data were applied to the pixel by pixel emissivity corrections and the pseudo-acceleration of the periodical thermal phenomena. Because the emissivity of industrial materials and biological tissues were usually inhomogeneous, it has the different temperature dependence on each pixel. The time-scale resolution for the periodic thermal event was improved with the algorithm for "pseudo-acceleration". It contributes to reduce the noise by integrating the multiple image data, keeping a time resolution. The anisotropic thermal properties of some composite materials such as thermal insulating materials of cellular plastics and the biometric composite materials were analyzed using these techniques.
机译:基于我们的原始技术(例如消色差透镜设计,用于捕获长波红外中的微尺度图像,实时叠加的视频信号),开发了使用微测辐射热计进行定量微尺度热成像的移动式设备。发射率校正和时间帧的伪加速。仪器的总尺寸设计为放入17厘米×28厘米×26厘米尺寸的携带箱中。视频信号合成器能够记录监控温度或定位数据的直接数字信号。嵌入每个图像中的编码数字信号数据被解码以读出。最初定义了对测量数据进行编码/解码的协议。通过像素发射率校正和周期性热现象的伪加速,将红外摄像机的混合信号和施加的数据应用于像素。由于工业材料和生物组织的发射率通常不均匀,因此每个像素的温度依赖性不同。周期性热事件的时标分辨率通过“伪加速”算法得到了改善。通过整合多个图像数据,保持时间分辨率,有助于降低噪声。使用这些技术分析了一些复合材料的各向异性热性能,例如蜂窝塑料的绝热材料和生物特征复合材料。

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