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Sr doped BNKT sensor materials for structural health monitoring

机译:掺Sr的BNKT传感器材料用于结构健康监测

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In the current paper lead-free piezoelectric ceramics BNKT, [Bi(NaK)]SrTiO (where x=0, 0.02, 0.04, 0.06) are prepared by conventional solid state route. Calcination studies are carried out to optimize the properties. XRD studies are carried out to confirm the perovskite phase formation. The powders are prepared in the form of discs of 10 mm diameter and 1.0 mm thickness. Subsequently, compacted samples are sintered in the range of 1175 °C to 1200 °C to improve the density. The relative densities of all the samples are determined by first principle method. Poling dependence and stability of lead free BNKT ceramic system are investigated. The effect of Sr doping piezoelectric charge coefficient (d), and coupling coefficient (K) are discussed in detail. Dielectric properties are studied by varying strontium content. Partial doping of Sr on BNKT ceramic improved the piezoelectric and dielectric properties substantially. The electric measurements reveals that the ceramic with x=0.03 & 0.04 has the better piezoelectric and dielectric properties. The obtained properties are piezoelectric charge coefficient (d), 140 pC/N, dielectric constant (ε), 850 and dielectric loss (tan δ), 0.045. BNKT ceramic prototypes are designed to operate with lamb waves for the purpose of monitoring the structural integrity of structures.
机译:在当前的纸无铅压电陶瓷BNKT中,通过常规的固态路线制备了[Bi(NaK)] SrTiO(其中x = 0、0.02、0.04、0.06)。进行煅烧研究以优化性能。进行XRD研究以确认钙钛矿相的形成。粉末以直径为10毫米,厚度为1.0毫米的圆盘形式制备。随后,在1175°C至1200°C的范围内烧结压实的样品,以提高密度。所有样品的相对密度通过第一原理方法确定。研究了无铅BNKT陶瓷体系的极化依赖性和稳定性。详细讨论了Sr掺杂压电电荷系数(d)和耦合系数(K)的影响。通过改变锶含量研究介电性能。在BNKT陶瓷上部分掺杂Sr大大改善了压电和介电性能。电学测量表明,x = 0.03和0.04的陶瓷具有更好的压电和介电性能。所获得的特性是压电电荷系数(d)140 pC / N,介电常数(ε)850和介电损耗(tanδ)0.045。 BNKT陶瓷原型设计用于与兰姆波一起工作,以监控结构的结构完整性。

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