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Effect of Pozzolanic Materials and Poling Field on Electromechanical Coupling Coefficient of Cement-Based Piezoelectric Composites

机译:波佐材料与抛光场对基于水泥基压电复合材料机电耦合系数的影响

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Electromechanical coupling coefficient of cement-based piezoelectric composites affected by pozzolanic materials and poling field are investigated. Specimens, through a pressure approach, are manufactured by combining PZT powders and cement-based binder with the same volume fraction. Pozzolanic materials including fly ash, slag and silica fume replace 20% cement in the binder. Three poling fields are considered to induce piezoelectricity of 0-3 cement-based composites. Results show that electromechanical coupling coefficients do not have many fluctuations in terms of material ages for any cement-pozzolanic piezoelectric composites. With the same volumetric substitutes of pozzolanic materials, the electromechanical coupling coefficient with pozzolanic materials except fly ash is lower than that with plain cement, especially for silica fume having a 7.9% decrease. Raising poling field can increase electromechanical coupling coefficients. Polarization of cement-based piezoelectric composites containing silica fume in low poling fields such as 0.5kV/mm and 1kV/mm is not easy to complete.
机译:研究了受欢迎材料影响的基于水泥基压电复合材料的机电耦合系数。通过压力方法,通过将PZT粉末和基于水泥基粘合剂与相同的体积分数组合来制造标本。 Pozzolanic材料,包括粉煤灰,渣和二氧化硅烟气替代粘合剂中的20%水泥。考虑三个极化场诱导0-3个水泥基复合材料的压电性。结果表明,机电耦合系数在任何水泥 - 波佐酸的压电复合材料的材料时代没有许多波动。采用相同的替代波佐替代材料,除粉煤灰外的火山灰材料的机电耦合系数低于普通水泥,特别是对于硅烟来减少7.9%。升高抛光场可以增加机电耦合系数。含有二氧化硅烟气的水泥基压电复合材料如0.5kV / mm和1kV / mm的偏振不易完成。

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