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A closed-form solution for the computation of geometric correction factors for four-point resistivity measurements on cylindrical specimens

机译:圆柱试样四点电阻率测量的几何校正因子计算的封闭形式解

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The present work deals with the evaluation of geometric correction factors for dc four-point probe measurements on finite cylindrical specimens for a random placement of the four probes on a circular face of the specimen. A closed-form (CF) analytical expression is obtained for the potential difference between the voltage probes via the solution of Laplace's equation using the variable-separation technique. The potential difference thus obtained is subsequently used to compute the geometric correction factor. The applicability of the solution is illustrated for two specific cases using a collinear probe-array, namely probes arranged along a radius and normal to a radius. Correction factors obtained from the CF solution are validated in each case by a finite-element simulation solution obtained using COMSOL Multiphysics 3.2. Additionally, the correction factors from the two methods are compared to analytical approximation factors, evaluated using expressions that exist in the literature. A range defined by a lower and an upper analytical approximation factor is computed for each specific case. Correction factors from the CF and COMSOL solutions show an excellent match with each other and lie within the analytical approximation bounds. The application of the CF solution is demonstrated for experimental measurements on copper specimens of different cylindrical geometries.
机译:本工作涉及有限圆柱样品上直流四点探针测量的几何校正系数的评估,以将四个探针随机放置在样品的圆面上。使用变量分离技术通过拉普拉斯方程的解获得电压探针之间的电位差的封闭形式(CF)解析表达式。如此获得的电势差随后用于计算几何校正因子。使用共线探针阵列说明了该解决方案在两种特定情况下的适用性,即沿着半径并垂直于半径排列的探针。在每种情况下,都可以通过使用COMSOL Multiphysics 3.2获得的有限元模拟解决方案来验证从CF解决方案获得的校正因子。此外,将两种方法的校正因子与解析近似因子进行比较,并使用文献中存在的表达式进行评估。对于每种特定情况,将计算一个由较低和较高解析近似因子定义的范围。 CF和COMSOL解决方案的校正因子相互之间显示出极佳的匹配,并且位于解析近似范围内。证明了CF解决方案在不同圆柱几何形状的铜样品上进行实验测量的应用。

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