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Non-contact phosphor thermometry for process control

机译:用于过程控制的非接触式磷光体温度

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Manufacturing and other industrial processes often require monitoring and control of temperature. Thermometry based on fluorescence properties of surface-bonded phosphors offers a number of advantages over traditional methods. The method is non-contact, remote, and independent of surface optical properties such as emissivity. Only a thin layer, less than 50 microns thick, is required of fluorescent materials that are temperature-active and chemically stable up to temperatures in excess of 1600 C. Phosphor thermometry has been developed from these high temperature extremes all the way down to cryogenic temperatures within liquid helium dewars. The fluorescence effects are stable in time, not subject to drift and need for repeated recalibration. Measurement techniques often involve use of optical fibers and other components that allow access into confined geometries and environments with high vibration, electromagnetic fields, or other extreme conditions. Uses include thermal management of cutting or shaping tools, monitoring of furnace and combustor walls or internal components, assembly components in automated lines, sheet metal surface thermometry, measurement of rotating components in motors, generators, turbine engines, and similar systems, fiber temperature measurement in textile fiber spinning, etc. Fluorescence measurement yields absolute temperatures, not dependent on references, and can have accuracies of less than 1 K, with precisions well below 0.1 K, providing opportunity for ultra high precision process control, life testing, and quality control.
机译:制造和其他工业过程通常需要监测和控制温度。基于表面键合荧光体的荧光性能的温度计提供了与传统方法相比的许多优点。该方法是非接触式,远程,且与表面光学性质(如发射率)无关。只有薄层,厚度小于50微米,是温度活性的荧光材料和化学稳定,高于超过1600℃的温度。荧光体热量从这些高温极值一直发育到低温温度在液氦露珠内。荧光效应及时稳定,不受漂移的影响,并且需要重复重新校准。测量技术通常涉及使用光纤和其他组件,其允许进入限制的几何形状和具有高振动,电磁场或其他极端条件的环境。用途包括切割或成型工具的热管理,监控炉子和燃烧器壁或内部部件,自动化线上的组装部件,金属板表面温度测量,电动机,发电机,涡轮发动机和类似系统的旋转部件,纤维温度测量在纺织纤维纺丝等中。荧光测量产生绝对温度,不依赖于参考,并且可以具有小于1 k的精度,精度远低于0.1 K,为超高精度过程控制,寿命测试提供机会。

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