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Assessment of Infrared Thermography for Cyclic High-Temperature Measurement and Control

机译:红外热成像技术对循环高温测量和控制的评估

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Infrared thermography (IRT), a non-invasive temperature measurement technique has been investigated and developed for use with cyclic high-temperature loading. The technique utilizes an infrared thermography camera (IRTC) and Rolls-Royce HE23 black thermal paint (TP). The TP is applied to a test-piece surface to provide a stable emissivity value and accurate temperature measurement for the duration of thermal cycling. Spot-welded type N thermocouples (NTCs) are utilized for accuracy validation of the IRTC technique for both temperature monitoring and temperature control. An evaluation of the technique has been employed upon diverse test specimen geometries and alloy compositions at temperatures between 100℃ and 700℃. Unfavorable effects during cyclic temperature measurement such as thermocouple shadowing are also highlighted and quantified. In combination with HE23 TP, IRTC control and measurement have proven accurate to within ±2℃ NTCs, a validated cyclic high-temperature measurement technique.
机译:红外热成像(IRT)是一种无创的温度测量技术,已被研究和开发用于循环高温负载。该技术利用红外热像仪(IRTC)和劳斯莱斯HE23黑色热敏涂料(TP)。 TP应用于试件表面,以在热循环过程中提供稳定的发射率值和准确的温度测量值。点焊N型热电偶(NTC)用于对温度监控和温度控制的IRTC技术进行精度验证。在100℃至700℃之间的温度下,对各种几何形状的试样和合金成分进行了技术评估。循环温度测量期间的不利影响(例如热电偶遮蔽)也将突出显示并量化。与HE23 TP结合使用,已证明IRTC控制和测量的精度在±2℃NTCs以内,这是一种经过验证的循环高温测量技术。

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