Nb2O5晶型对铌酸钾钠基压电陶瓷结构与性能的影响

Influence of Nb2O5 crystal form on the structure and properties of potassium sodium niobate-based piezoelectric ceramics

  • 摘要: 采用固相烧结工艺,在温度为1055~1070 ℃的条件下制备了致密度高且综合电学性能优异的(K0.44Na0.52Li0.04)(Nb0.9Ta0.06Sb0.04)O3无铅压电陶瓷。研究了不同晶型的Nb2O5对铌酸钾钠基压电陶瓷烧结特性、相结构、微观结构及电学性能的影响。实验结果表明,正交与单斜晶型共存的Nb2O5具有更优异的烧结特性,基于其制备的压电陶瓷表现出更为优异优化的电学性能:压电常数d33=211 pC·N−1、机电耦合系数kp=44%、介电损耗tanδ=0.0324。这表明,添加少量单斜晶型Nb2O5可有效调控Nb5+的扩散速率和相界分布,从而显著提升陶瓷的综合性能。研究结果为高性能无铅压电陶瓷的原料选择与结构设计提供了重要参考依据。

     

    Abstract: Utilizing solid-phase sintering technology, lead-free piezoelectric ceramics (K0.44Na0.52Li0.04)(Nb0.9Ta0.06Sb0.04)O3 with high density and superior electrical properties were successfully fabricated at temperatures ranging from 1055 to 1070 ℃. The impact of various crystal structures of niobium pentoxide on the sintering behavior, phase composition, microstructure, and electrical characteristics of potassium sodium niobate-based piezoelectric ceramics was investigated. Experimental results demonstrate that Nb2O5 with coexistence of orthorhombic and monoclinic crystal forms exhibits superior sintering characteristics and excellent electrical properties. The piezoelectric constant is d33 = 211 pC·N−1, electromechanical coupling coefficient is kp = 44%, and dielectric loss is tanδ = 0.0324. This suggests that incorporating a minor amount of monoclinic Nb2O5 can optimize the diffusion kinetics and phase boundary control of Nb5+, thereby significantly improving the overall performance of the ceramics. This research provides a critical foundation for the selection of raw materials and structural design of high-performance lead-free piezoelectric ceramics.

     

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