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A Technique for Coupled Thermomechanical Response Measurement Using Infrared Thermography and Digital Image Correlation (TDIC)

机译:基于红外热成像和数字图像相关技术(TDIC)的热机械响应耦合测量技术

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摘要

An integrated infrared thermography and 3-D digital image correlation (TDIC) technique has been developed which allows for simultaneous measurement of spatial and temporal distributions of temperatures and displacements. For this, a novel technique was developed to calibrate the IR thermal cameras with a stereo-vision digital image correlation (DIC) system using the standard pin-hole stereo calibration model. This method fuses thermal and displacement information and compensates for the difference in camera resolutions. Several high temperature black and white paints were evaluated to determine their characteristics including the temperature-dependent emissivity of each paint, the mixed emissivity of both paints in the speckle pattern, and optical thickness. The advantages of evaluating linked full-field temperatures and strain measurements through the TDIC technique are demonstrated through measurements obtained on an E-glass/vinyl ester/balsa wood sandwich composite subjected to simultaneous one-sided heating and compressive loading.
机译:已经开发出一种集成的红外热成像和3-D数字图像相关(TDIC)技术,该技术可以同时测量温度和位移的时空分布。为此,开发了一种新技术,该技术使用标准针孔立体校准模型,通过立体视觉数字图像相关(DIC)系统校准红外热像仪。这种方法融合了热和位移信息,并补偿了摄像机分辨率的差异。对几种高温黑白涂料进行了评估,以确定它们的特性,包括每种涂料的温度相关发射率,斑点图案中两种涂料的混合发射率以及光学厚度。通过TDIC技术评估链接的全场温度和应变测量的优势,通过在同时承受单侧加热和压缩载荷的E-玻璃/乙烯基酯/轻木夹芯复合材料上获得的测量结果得以证明。

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