High-performance lead free piezoceramics have drawn much attention bec的简体中文翻译

High-performance lead free piezocer

High-performance lead free piezoceramics have drawn much attention because of their excellent piezoelectricity, strong ferroelectricity, and wide application potentials in many electronic devices (e.g., sensors, actuators, ultrasound transducers, etc.)[1-5].Among all the lead-free piezoelectric ceramics, (K0.5Na0.5)NbO3 (denoted hereafter as KNN) has become one of the most extensively studied piezoelectric systems due to its large d33 and high Tc[6-8]. However, it is very difficult to obtain high-density KNN ceramics by ordinary sinitering method because of their poor sinterability and high volatility.[9] Furthermore, very narrow sintering temperature range is also a big challenge for its industrial production[10, 11].Over the past few decades, numerous efforts have been made on KNN-based ceramics to improve the sinterability of KNN based ceramics.[12-15]
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高性能无铅压电陶瓷因其出色的压电性,强铁电性以及在许多电子设备(例如传感器,致动器,超声换能器等)中的广泛应用潜力而备受关注[1-5]。在所有铅中(K0.5Na0.5)NbO3(以下称为KNN)的无压电陶瓷由于其d33大和Tc高而成为研究最广泛的压电系统之一。[6-8]但是,很难做到这一点。由于其易烧结性和高挥发性,可通过普通的烧结法获得高密度的KNN陶瓷。[9] 此外,非常窄的烧结温度范围对其工业生产也是一个巨大的挑战[10,11]。在过去的几十年中,为提高KNN基陶瓷的可烧结性,人们已经做出了许多努力。
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High-performance lead free piezoceramics have drawn much attention because of their excellent piezoelectricity, strong ferroelectricity, and wide application potentials in many electronic devices (e.g., sensors, actuators, ultrasound transducers, etc.)[1-5].Among all the lead-free piezoelectric ceramics, (K0.5Na0.5)NbO3 (denoted hereafter as KNN) has become one of the most extensively studied piezoelectric systems due to its large d33 and high Tc.[6-8] However, it is very difficult to obtain high-density KNN ceramics by ordinary sinitering method because of their poor sinterability and high volatility.[9] Furthermore, very narrow sintering temperature range is also a big challenge for its industrial production[10, 11].Over the past few decades, numerous efforts have been made on KNN-based ceramics to improve the sinterability of KNN based ceramics.[12-15]
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高性能无铅压电陶瓷因其优异的压电性、强的铁电性以及在许多电子器件(如传感器、驱动器、超声换能器等)中的广泛应用潜力而备受关注[1-5]由于其d33大、Tc高,已成为压电材料研究最为广泛的系统之一[6-8]工业生产[10,11]在过去的几十年里,人们对KNN基陶瓷进行了大量的研究,以提高KNN基陶瓷的烧结性能。[12-15]<br>
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