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Numerical assessment of the methods of measurement of the electrical resistance in carbon fiber reinforced cement

机译:碳纤维增强水泥中电阻测量方法的数值评估

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Carbon fiber reinforced cement is a smart material due to its sensing ability, which is based on piezoresistivity. A finite element model for simulating the measurement of electrical resistance in this material is provided. The measured four-probe resistance decreases with increasing distance between the adjacent voltage and current contacts. For a beam of size 320 x 40 x 40 mm(3), the minimum distance for accurate four-probe resistivity measurement is 5 mm for surface contacts (at the end surfaces), 5 mm for loop contacts (around the perimeter) and 40 mm for line contacts (on one surface). The two-probe resistivity is most inaccurate for the line contacts. For loop contacts, the two-probe resistivity is accurate when the aspect ratio exceeds 8, and the four-probe resistivity is accurate when the aspect ratio exceeds 1.5. For a column of size 426 x 92 x 76 mm(3), the minimum distance between the adjacent current and voltage contacts for accurate four-probe resistivity measurement is 50 mm for loop contacts and 400 mm for line contacts. For a slab of size 9.75 x 4.88 x 0.30 m(3), the minimum distance for accurate four-probe resistivity measurement along the 9.75 m length is 250 mm for line contacts.
机译:碳纤维增强水泥由于具有基于压阻的感应能力,因此是一种智能材料。提供了用于模拟这种材料中电阻测量的有限元模型。随着相邻电压和电流触点之间距离的增加,测得的四探针电阻减小。对于尺寸为320 x 40 x 40 mm(3)的光束,用于精确四探针电阻率测量的最小距离对于表面接触(在端面)为5 mm,对于回路接触(在周边)为5 mm,并且40线接触(一个表面)为mm。对于线接触点,两探针电阻率最不准确。对于回路触点,当长径比超过8时,两探针电阻率准确;当长径比超过1.5时,四探针电阻率准确。对于尺寸为426 x 92 x 76 mm(3)的色谱柱,为了进行精确的四探针电阻率测量,相邻电流和电压触点之间的最小距离对于环路触点为50 mm,对于线路触点为400 mm。对于9.75 x 4.88 x 0.30 m(3)的平板,对于线接触,沿9.75 m长度进行精确的四探针电阻率测量的最小距离为250 mm。

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