Mensur-Alkoy Ebru, Kaya Mustafa Yunus, Avdan Duygu, Alkoy Sedat
IEEE Trans Ultrason Ferroelectr Freq Control. 2016 Jun;63(6):907-14. doi: 10.1109/TUFFC.2016.2554319. Epub 2016 Apr 14.
In this paper, dense ( x )PZN-( 1-x )PZT ceramics were prepared at sintering temperatures as low as 950 °C with PZN ratios of x=0.4 , 0.5, and 0.6. The 0.4PZN-0.6PZT composition was found to crystallize in the perovskite phase at this sintering temperature without the presence of any other secondary phases. Higher electrical and electromechanical properties were obtained from the 0.4PZN-0.6PZT composition compared with the x=0.5 and x=0.6 counterparts. Dielectric constant, piezoelectric charge coefficient, electromechanical coupling coefficient, and mechanical quality factor of 0.4PZN-0.6PZT were found to be 2608, 477 pC/N, 64.4, and 65, respectively. While the Curie temperature was 140 °C for pure PZN, the Curie temperature was measured as 300 °C for x=0.4 composition. Green PZN-PZT fibers with circular cross section were drawn using alginate gelation method from the 0.4PZN-0.6PZT composition. Dense fibers were obtained after the sintering process, and piezocomposites were prepared with 1-3 connectivity using fibers with an average diameter of 600 [Formula: see text]. Composites with volume fraction of 20 vol% were investigated for passive acoustic sensor applications. Electrical properties of piezocomposites were found to be scalable and compatible with the electrical properties of the bulk composition. The dielectric constant, piezoelectric charge coefficient, and maximum strain value of the PZN-PZT 1-3 piezocomposite were measured as 345, 165 pC/N, and 0.13%, respectively.
在本文中,制备了PZN比例x = 0.4、0.5和0.6的致密(x)PZN-(1 - x)PZT陶瓷,烧结温度低至950℃。发现在该烧结温度下,0.4PZN-0.6PZT组合物在钙钛矿相中结晶,不存在任何其他第二相。与x = 0.5和x = 0.6的对应物相比,0.4PZN-0.6PZT组合物具有更高的电学和机电性能。发现0.4PZN-0.6PZT的介电常数、压电电荷系数、机电耦合系数和机械品质因数分别为2608、477 pC/N、64.4和65。纯PZN的居里温度为140℃,而x = 0.4组合物的居里温度测得为300℃。采用藻酸盐凝胶法从0.4PZN-0.6PZT组合物中拉制出具有圆形横截面的绿色PZN-PZT纤维。烧结后获得致密纤维,并使用平均直径为600 [公式:见正文] 的纤维制备具有1-3连通性的压电复合材料。研究了体积分数为20 vol%的复合材料在无源声学传感器中的应用。发现压电复合材料的电学性能是可扩展的,并且与块状组合物的电学性能兼容。PZN-PZT 1-3压电复合材料的介电常数、压电电荷系数和最大应变值分别测得为345、165 pC/N和0.13%。