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Surface temperature-field imaging with laser-induced thermographic phosphorescence

机译:具有激光诱导的热成像磷光的表面温度场成像

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摘要

A technique to remotely image temperature distributions of heated metallic surfaces is extended to higher temperatures. It uses a Dy~(+3):YAG thermographic phosphor (TP) bonded to the surface and excited by radiation at 355 nm. Digital images of the emission from two excited states were recorded and divided by each other to correct by normalization for illumination and coating nonuniformities. Results show that the TP can survive heating and cooling cycles to 1400 K and that emitting states achieve thermodynamic equilibrium before radiating. Temperatures in the range of 300-1300 K were determined by normalization of pairs of emission images with a single calibration constant. Uncertainties of ±7-13% at a spatial resolution of 20 μm and ±0.7-4% at a resolution of 500 μm were achieved.
机译:远程成像加热的金属表面温度分布的技术已扩展到更高的温度。它使用Dy _(+ 3):YAG热成像荧光粉(TP)粘结到表面并通过355 nm的辐射激发。记录来自两个激发态的发射的数字图像,并将它们彼此分开,以通过归一化来校正照明和涂层不均匀性。结果表明,TP可以经受住1400 K的加热和冷却循环,并且发射态在辐射之前达到热力学平衡。通过使用单个校准常数对发射图像对进行归一化,可以确定300-1300 K范围内的温度。在20μm的空间分辨率下达到±7-13%的不确定度,在500μm的分辨率下达到±0.7-4%的不确定度。

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