文章摘要
万淇通,张云飞,张梦雅,梁 博,邴丽娜* ,沈振江*.烧结温度和升温速率对钛酸钡陶瓷结构及 介电性能的影响[J].海南师范大学学报自科版,2023,36(4):400-408
烧结温度和升温速率对钛酸钡陶瓷结构及 介电性能的影响
Effect of Sintering Temperature and Heating Rate on the Structure and Dielectric Properties of Barium Titanate Ceramics
  
DOI:10.12051/j.issn.1674-4942.2023.04.007
中文关键词: 钛酸钡陶瓷  传统固相法  烧结温度  烧结升温速率  介电性能
英文关键词: barium titanate ceramics  solid state reaction  sintering temperature  heating rates  dielectric property
基金项目:海南省自然科学基金项目(521QN240,220RC595);国家自然科学基金项目(11304069);海南师范大学物理学 学科建设经费
作者单位
万淇通,张云飞,张梦雅,梁 博,邴丽娜* ,沈振江* 海南师范大学 物理与电子工程学院海南 海口 571158 
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中文摘要:
      采用固相法制备BaTiO3陶瓷,研究了烧结温度和烧结升温速率对陶瓷试样晶体结构、 微观形貌、介电性能的影响。实验表明,所制陶瓷均为四方相钙钛矿晶格结构。烧结温度低会造 成较多点缺陷,随烧结温度的增大,晶体均匀度和致密性有效提高,晶粒尺寸增大有助于促进畴壁 运动,介电性能有所提升。烧结升温速率过慢同样会造成点缺陷浓度增多,且有液相生成,气孔较 多,气孔含量高会降低介电性能的稳定性、减小介电常数、增大介电损耗;提高升温速率同样有助 于提高晶粒尺寸、均匀度和致密性,当晶粒尺寸到达单畴晶粒尺寸附近时,内应力为0,90°铁电畴 贡献高介电常数;但过快的升温速率会出现“过烧现象”,致使介电性能下降。当以5 ℃/min的烧结 升温速率升温至1 275 ℃时,介电常数最大,介电损耗最小,其值分别为ε=2 374,tanδ=0.023 18。
英文摘要:
      BaTiO3 ceramics were prepared by solid phase method. The effects of sintering temperature and sintering tem⁃ perature on crystal structure, microstructure and dielectric properties of ceramic samples were investigated. The results showed that all the ceramics produced had a tetragonal perovskite lattice structure. Low sintering temperature lead to more defects at multiple points. With the increase of sintering temperature, the uniformity and density of crystals were improved effectively. The increase of grain size promoted the movement of domain walls and improve the dielectric properties. Too slow sintering heating rate also resulted in high point defect concentration, liquid phase generation, more porosity. High po⁃ rosity content reduced the stability of dielectric properties and dielectric constant, and increased dielectric loss. Increasing the heating rate also helped to improve the grain size, uniformity and densification. When the grain size reached around that of single domain, the internal stress of 0,90° ferroelectric domain contributed high dielectric constant. However, too fast heating rate generated "overburning phenomenon" resulting in dielectric properties decline. When the sintering tempera⁃ ture rised to 1 275 ℃ at the rate of 5 ℃/min, the dielectric constant was the maximum and the dielectric loss was the minimum, whose values were ε=2 374, tanδ=0.023 18.
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