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Determination of temperature dependency of material parameters for lead-free alkali niobate piezoceramics by the inverse method

机译:逆法测定无铅铌酸铅压电陶瓷材料参数的温度依赖性

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Sodium potassium niobate (NKN) piezoceramics have been paid much attention as lead-free piezoelectric materials in high temperature devices because of their high Curie temperature. The temperature dependency of their material parameters, however, has not been determined in detail up to now. For this purpose, we exploit the so-called Inverse Method denoting a simulation-based characterization approach. Compared with other characterization methods, the Inverse Method requires only one sample shape of the piezoceramic material and has further decisive advantages. The identification of material parameters showed that NKN is mechanically softer in shear direction compared with lead zirconate titanate (PZT) at room temperature. The temperature dependency of the material parameters of NKN was evaluated in the temperature range from 30?°C to 150?°C. As a result, we figured out that dielectric constants and piezoelectric constants show a monotonous and isotropic increment with increasing temperature. On the other hand, elastic stiffness constant c44E of NKN significantly decreased in contrast to other elastic stiffness constants. It could be revealed that the decrement of c44E is associated with an orthorhombic-tetragonal phase transition. Furthermore, ratio of elastic compliance constants s44E/s33E exhibited similar temperature dependent behavior to the ratio of piezoelectric constants d 15/d 33. It is suspected that mechanical softness in shear direction is one origin of the large piezoelectric shear mode of NKN. Our results show that NKN are suitable for high temperature devices, and that the Inverse Method should be a helpful approach to characterize material parameters under their practical operating conditions for NKN.
机译:铌酸钾钠(NKN)压电陶瓷由于居里温度高而作为高温设备中的无铅压电材料备受关注。到目前为止,尚未详细确定其材料参数的温度依赖性。为此,我们利用所谓的逆方法表示基于模拟的表征方法。与其他表征方法相比,逆方法仅需要一种压电陶瓷材料的样品形状,并具有其他决定性的优势。材料参数的鉴定表明,在室温下,与锆钛酸铅(PZT)相比,NKN在剪切方向上机械更软。在30?C至150?C的温度范围内评估NKN材料参数的温度依赖性。结果,我们发现介电常数和压电常数随着温度的升高呈现出单调和各向同性的增加。另一方面,与其他弹性刚度常数相比,NKN的弹性刚度常数c44E显着降低。可以发现,c44E的减少与正交-四方相变有关。此外,弹性柔量常数s44E / s33E的比率与压电常数d 15 / d 33的比率表现出相似的温度依赖性。人们怀疑,剪切方向上的机械柔软性是NKN大压电剪切模式的起源之一。我们的结果表明,NKN适用于高温设备,而逆方法应该是表征NKN实际操作条件下材料参数的有用方法。

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