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Potassium sodium niobate ceramics with broad phase transition range: Temperature-insensitive strain

机译:铌酸钾陶瓷具有宽相转变范围:温度不敏感菌株

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Excellent piezoelectric properties have been achieved in (K,Na)NbO3 (KNN)-based ceramics in the past few years. However, temperature-sensitive strain restricts the use of these ceramics in practical applications. In this work, we report improved piezoelectricity and temperature-insensitive strain in KNN-based ceramics. A broad temperature range for phase boundaries is formed by composition optimization, accounting for the observation of a highly improved strain stability. Interestingly, the strain for a ceramic with x = 0.025 varies by less than 5% and 9%, even if the temperature reaches 150 degrees C and 170 degrees C, respectively, which is comparable to that found for textured-LF4T ceramics. Furthermore, the stability of the original domain configuration with increasing temperature is tested to understand the underlying mechanism for the temperature-insensitive strain. The huge number of original domains retaining a piezoresponse at high temperature due to the extended phase boundary contributes to the temperature-insensitive strain. The present results open a new window for KNN-based ceramics to be used in applications demanding temperature-insensitive piezoelectric properties.
机译:在过去几年中,已经在(K,Na)NBO3(KNN)的陶瓷中实现了优异的压电性能。然而,温度敏感应变限制在实际应用中使用这些陶瓷。在这项工作中,我们报告了KNN系陶瓷中的改进的压电和温度不敏感菌株。通过组成优化形成相界的宽温度范围,占观察高度改善的应变稳定性。有趣的是,即使温度分别达到150℃和170摄氏度,陶瓷的陶瓷的菌株也会变化小于5%和9%。此外,测试了具有升高温度的原始结构域配置的稳定性,以了解温度不敏感菌株的底层机构。由于延伸的相位边界导致的高温下保留压电响应的大量原始域有助于温度不敏感菌株。本结果开启了一种用于基于KNN的陶瓷的新窗口,用于要求苛刻的温度不敏感压电性能的应用。

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