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Measurement of Rapid Temperature Profiles Using Thermoluminescent Microparticles

机译:使用热致发光微粒测量快速温度曲线

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摘要

The thermal history of a material with initially filled trap states may be probed using thermoluminescence. Since luminescent microparticles are composed of robust oxides, they are viable candidates for sensing temperature under conditions where all other types of direct-contact sensors fail. Mg2SiO4: Tb, Co particles with two thermoluminescent peaks have been heated using micromachined heaters over a 232°C to 313°C range on time scales of less than 200 ms. The effect of maximum temperature during excitation on the intensity ratio of the two luminescent peaks has been compared with first-order kinetics theory and shown to match within an average error of 4.4%.
机译:可以使用热致发光探测具有最初填充的陷阱状态的材料的热历史。由于发光微粒由坚固的氧化物组成,因此它们是在所有其他类型的直接接触式传感器失效的条件下感测温度的可行候选物。 Mg2SiO4:具有两个热致发光峰的Tb,Co粒子已使用微机械加热器在232°C至313°C的范围内以小于200毫秒的时间范围进行了加热。激发期间的最高温度对两个发光峰强度比的影响已与一级动力学理论进行了比较,并显示出在4.4%的平均误差内匹配。

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