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OBTAINING THE SENSED TEMPERATURES FROM A DETAILED MODEL OF A WELDED THERMOCOUPLE

机译:从焊接热电偶的详细模型获得感测温度

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When imbedded in dissimilar materials subject to large temperature gradients, thermocouples are known to yield erroneous (bias) temperature measurements. It has been established that the bias error may be accounted for with an appropriate computational model and the measured temperatures may be corrected with an appropriate kernel function. In this work, a thermocouple with a welded bead is considered. Eiarly two-dimensional models considered the thermocouple to be a single wire with effective thermal properties. The model in the current investigation is three-dimensional and represents the sensor as two wires, each with unique thermal properties. The welded bead is represented as a separate entity with properties distinct from those of the wires. The problem of determining what location in the three-dimensional model corresponds to the measured temperature is considered. Earlier models have considered the sensed temperature to be the temperature at the tip of the two-dimensional thermocouple or, in three-dimensional models, the temperature at the center of the volume of the welded bead. In the current work, a theory is set forth for identifying the location at which the temperature is sensed by a thermocouple. This theory is in line with traditional thermoelectric theory and is supported with experimental evaluation with thermal imaging as well as examination of thermocouples by scanning electron microscopy and energy dispersive X-ray analysis. The significance of accurate modeling of the sensed temperatures is demonstrated with a numerical experiment.
机译:当嵌入经受大的温度梯度的不同材料时,已知热电偶产生错误(偏置)温度测量。已经确定,偏置误差可以用适当的计算模型计算,并且可以用适当的内核函数校正测量的温度。在这项工作中,考虑具有焊接珠的热电偶。 eiarly二维模型认为热电偶是具有有效热性能的单线。电流调查中的模型是三维,并表示传感器作为两根线,每个电线都具有独特的热性能。焊接珠子表示为单独的实体,其具有与线的特性不同的特性。考虑了确定三维模型中的哪个位置的问题对应于测量的温度。早期的模型已经认为感测温度是二维热电偶尖端的温度,或者在三维模型中,在焊接珠子的体积中心的温度下。在当前的工作中,阐述了一个理论,用于识别热电偶感测温度的位置。该理论符合传统的热电理论,并通过扫描电子显微镜和能量分散X射线分析来支持热成像的实验评估,以及热电偶检查。用数值实验证明了感测温度的精确建模的重要性。

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