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Amplitude-sensitive modulation thermography to measure moisture in building materials

机译:幅度敏感调制热成像以测量建筑材料中的水分

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There have been reports about moisture detection in building walls by reflective IR-thermography. Typically, only limited results could be obtained because of the emission coefficient variations, leaking radiation or inhomogeneous illumination of the object. In addition, the quantitative relation between remission spectra and the moisture has often been unclear. Reflectometry uses constant excitation illumination which is recorded by the IR camera. With the use of the 'lock-in-technology' a low frequency modulated signal of an IR radiation source is coupled with the thermo camera and a frequency and phase sensitive signal from the thermal images can be derived. The advantage is, that emission coefficient dependencies are eliminated and that leaking radiation does not have any influence on the measured signal. The selective water measurement is possible, because there is an interference filter mounted in front of the radiator which has its transmission maximum at the wavelength of an absorption band of water. The area investigated is therefore illuminated under well defined circumstances and quantitative moisture measurement on the surface of building materials becomes a possibility. The illumination modulation is done with a sine wave to facilitate the calculation of the temporal intensity behavior of the amplitude signal. Subsequently, the amplitude image is used to determine the distribution and the level of moisture quantitatively. Point measurements in the laboratory were carried out on several building materials with changing moisture levels. It could be shown that this method successfully eliminates disturbing contributions to the measured signal like surface effects or leaking radiation.
机译:通过反射红外热成像已经有关于建筑墙的湿度检测。通常,由于发射系数变化,泄漏辐射或物体的不均匀照射,只能获得有限的结果。此外,缓解光谱和水分之间的定量关系通常尚不清楚。反射测量法使用由IR相机记录的恒定励磁照明。通过使用“锁定技术”的IR辐射源的低频调制信号与热敏摄像机耦合,可以导出来自热图像的频率和相位敏感信号。优点是消除了发射系数依赖性,并且泄漏辐射对测量信号没有任何影响。选择性水测量是可能的,因为在散热器的前面有一个干涉滤光器,其在吸收带的吸收带的波长处具有其变速器最大值。因此,研究的区域在明确的情况下照亮,并且建筑材料表面的定量水分测量成为可能性。使用正弦波进行照明调制,以便于计算幅度信号的时间强度行为。随后,幅度图像用于定量地确定分布和水平水平。实验室的点测量在几种具有变化水分水平的建筑材料上进行。可以表明,该方法成功消除了对表面效果或泄漏辐射的测量信号的干扰贡献。

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