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基于(K,Na)NbO的无铅压电陶瓷的最新进展

Recent Developments in (K, Na)NbO-Based Lead-Free Piezoceramics.

作者信息

Lee Geun-Soo, Kim Jung-Soo, Kim Seung-Hyun, Kwak San, Kim Bumjoo, Kim In-Su, Nahm Sahn

机构信息

Department of Materials Science and Engineering, Korea University, 145 Anam-ro, Seongbuk-gu, Seoul 02841, Republic of Korea.

出版信息

Micromachines (Basel). 2024 Feb 26;15(3):325. doi: 10.3390/mi15030325.

Abstract

(KNa)NbO (KNN)-based ceramics have been extensively investigated as replacements for Pb(Zr, Ti)O-based ceramics. KNN-based ceramics exhibit an orthorhombic structure at room temperature and a rhombohedral-orthorhombic (R-O) phase transition temperature (), orthorhombic-tetragonal (O-T) phase transition temperature (), and Curie temperature of -110, 190, and 420 °C, respectively. Forming KNN-based ceramics with a multistructure that can assist in domain rotation is one technique for enhancing their piezoelectric properties. This review investigates and introduces KNN-based ceramics with various multistructures. A reactive-templated grain growth method that aligns the grains of piezoceramics in a specific orientation is another approach for improving the piezoelectric properties of KNN-modified ceramics. The piezoelectric properties of the [001]-textured KNN-based ceramics are improved because their microstructures are similar to those of the [001]-oriented single crystals. The improvement in the piezoelectric properties after [001] texturing is largely influenced by the crystal structure of the textured ceramics. In this review, [001]-textured KNN-based ceramics with different crystal structures are investigated and systematically summarized.

摘要

基于铌酸钾钠(KNa)NbO₃(KNN)的陶瓷作为锆钛酸铅基陶瓷的替代品已得到广泛研究。基于KNN的陶瓷在室温下呈现正交结构,其菱方-正交(R-O)相变温度()、正交-四方(O-T)相变温度()和居里温度分别为-110、190和420℃。形成具有有助于畴旋转的多结构的KNN基陶瓷是提高其压电性能的一种技术。本文综述研究并介绍了具有各种多结构的KNN基陶瓷。一种使压电陶瓷晶粒沿特定方向排列的反应模板晶粒生长方法是改善KNN改性陶瓷压电性能的另一种途径。具有[001]织构的KNN基陶瓷的压电性能得到改善,因为它们的微观结构与[001]取向的单晶相似。[001]织构后压电性能的改善在很大程度上受织构陶瓷晶体结构的影响。在本文综述中,对具有不同晶体结构的[001]织构KNN基陶瓷进行了研究并系统总结。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5bbe/10972221/69b7f093bba6/micromachines-15-00325-g001.jpg

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