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Dielectric and electromechanical properties of modified cement/polymer based 1-3 connectivity piezoelectric composites containing inorganic fillers

机译:含无机填料的改性水泥/聚合物基1-3连接压电复合材料的介电和机电性能

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Here the modified cement/polymer based 1-3 piezoelectric composites containing inorganic fillers were prepared. The influences of filler content and composite thickness on dielectric and electromechanical properties of the composites were investigated. The results indicate that the composites with fillers of graphite and strontium ferrite (Sr-ferrite) have larger static relative dielectric constant and smaller dielectric loss than those with silicon powder. The strontium ferrite can improve the thickness electromechanical coupling property of the composites. When the strontium ferrite content is 5 wt.% of the cement/polymer matrix, the piezoelectric composite has the largest thickness electromechanical coupling coefficient of 64.27% and the smallest mechanical quality factor 8.64. The graphite filler shows a certain suppression effect on the planar resonance of the composites. The coupling effects between the planar and thickness modes of the composites were reduced by decreasing the composite thickness, and pure thickness mode resonance can be obtained at a small composite thickness. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这里,制备了含有无机填料的改性水泥/聚合物基1-3压电复合材料。研究了填料含量和复合材料厚度对复合材料介电和机电性能的影响。结果表明,与硅粉相比,含石墨和锶铁氧体(Sr-铁氧体)填料的复合材料具有较大的静态相对介电常数和较小的介电损耗。铁氧体锶可以改善复合材料的厚度机电耦合性能。当锶铁氧体含量为水泥/聚合物基体的5重量%时,压电复合材料具有最大厚度的机电耦合系数为64.27%和最小的机械品质因数8.64。石墨填料对复合材料的平面共振表现出一定的抑制作用。通过减小复合材料的厚度可以降低复合材料的平面模式和厚度模式之间的耦合效应,并且在较小的复合材料厚度下可以获得纯的厚度模式共振。 (C)2015 Elsevier Ltd.保留所有权利。

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