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A Method to Quickly Test the Emissivity with an Infrared Thermal Imaging System within a Small Distance

机译:一种在短距离内用红外热成像系统快速测试发射率的方法

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A simple method has been set up to quickly test the emissivity with an infrared thermal imaging system within a small distance according to the theory of measuring temperature by infrared system, which is based on the Planck radiation law and Lambert-beer law. The object's temperature is promoted and held on by a heater while a temperature difference has been formed between the target and environment. The emissivity of human skin, galvanized iron plate, black rubber and liquid water has been tested under the condition that the emissivity is set in 1.0 and the testing distance is 1m. According to the invariance of human's body temperature, a testing curve is established to describe that the thermal imaging temperatures various with the emissivity which is set in from 0.9 to 1.0. As a result, the method has been verified. The testing results show that the emissivity of human skin is 0.95. The emissivity of galvanized iron plate, black rubber and liquid water decreases with the increase of object's temperature. The emissivity of galvanized iron plate is far smaller than the one of human skin, black rubber or water. The emissivity of water slowly linearly decreases with the increase of its temperature. By the study, within a small distance and clean atmosphere, the infrared emissivity of objects may be expediently tested with an infrared thermal imaging system according to the method, which is promoting the object's temperature to make it different from the environment temperature, then simultaneously measures the environmental temperature, the real temperature and thermal imaging temperature of the object when the emissivity is set in 1.0 and the testing distance is 1.0m.
机译:根据基于普朗克辐射定律和兰伯特-比尔定律的红外系统测温理论,建立了一种简单的方法,利用红外热成像系统在短距离内快速测试发射率。在目标和环境之间已形成温差的同时,加热器加热并保持物体的温度。在将发射率设置为1.0且测试距离为1m的条件下,对人体皮肤,镀锌铁板,黑色橡胶和液态水的发射率进行了测试。根据人体温度的不变性,建立了一条测试曲线来描述热成像温度随发射率设置为0.9到1.0的变化。结果,该方法已得到验证。测试结果表明,人体皮肤的发射率为0.95。镀锌铁板,黑色橡胶和液态水的发射率随物体温度的升高而降低。镀锌铁板的发射率远小于人类皮肤,黑色橡胶或水之一。水的发射率随温度的升高而缓慢地线性降低。通过这项研究,在短距离和干净的气氛中,可以根据该方法用红外热成像系统方便地测试物体的红外发射率,该方法可以促进物体的温度使其不同于环境温度,然后同时进行测量。当发射率设为1.0且测试距离为1.0m时,物体的环境温度,实际温度和热成像温度。

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