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Eddy-Current Characterization of Metal Foams

机译:金属泡沫的涡流表征

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Cellular materials are characterized by their relative density, pore shape and orientation, the average cell size, and the degree of pore interconnectivity which all depend upon the method and conditions used for processing. This has created an interest in non-invasive sensor techniques to characterize the foam structure. Multifrequency electrical impedance measurements were performed using an eddy current technique on open cell aluminum foam with systematically varied relative densities and pore sizes. The impedance was dominated at all frequencies by the amount of metal contained within a probed volume of foam and the tortuosity of the current path. At low frequency, the impedance data were found to be relatively insensitive to pore size variations enabling an independent measure of hte relative density. At high frequency, the data indicated a strong dependence on the cell size.
机译:多孔材料的特征在于它们的相对密度,孔的形状和方向,平均泡孔大小以及孔的互连程度,这些都取决于用于处理的方法和条件。这引起了对非侵入性传感器技术的关注,以表征泡沫结构。使用涡流技术对开孔泡沫铝进行了多频电阻抗测量,该泡沫具有相对变化的相对密度和孔径。在所有频率下,阻抗都取决于所探查的泡沫体积中所含的金属量和电流路径的曲折度。在低频下,发现阻抗数据对孔径变化相对不敏感,因此可以独立测量相对密度。在高频下,数据表明强烈依赖于细胞大小。

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