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首页> 外文期刊>Journal of materials science >Effects of Bi_2O_3, Sm_2O_3 content on the structure, dielectric properties and dielectric tunability of BaTiO_3 ceramics
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Effects of Bi_2O_3, Sm_2O_3 content on the structure, dielectric properties and dielectric tunability of BaTiO_3 ceramics

机译:Bi_2O_3,Sm_2O_3含量对BaTiO_3陶瓷结构,介电性能和介电可调性的影响

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摘要

(1-x)BaTiO3-x (Bi2O3, Sm2O3) (BT-BS, x=0.1, 0.15, 0.2, 0.25, 0.3) ceramics were prepared by traditional solid phase sintering method. The effects of structure, temperature and frequency on dielectric tunability, ferroelectric relaxation characteristics and dielectric loss were analyzed. Phase analysis by XRD showed that the main crystal phase was BaTiO3 perovskite structure, in addition to the second phase of Bi7.68Ti0.32O12.16 was also generated. The surface morphology was analyzed by SEM, it was found that the generation of second phase and the porosity decreased with the increase of BS content. At the same time, the increase of Sm3+ promoted the growth of crystal particles. The dielectric constant-temperature curve gradually became flat, which indicated that the relaxation characteristics of the ferroelectric ceramic gradually appear. The Curie temperature point gradually decreased with the doping of the BS. The relationship between dielectric loss and temperature showed that the dielectric loss increased when the temperature over 150 degrees C. This is mainly related to relaxation polarization at high temperature. Under the action of DC applied electric field and room temperature, dielectric loss and dielectric constant decreased with the increase of BS content. Meanwhile, dielectric tunability was improved when composite phase appeared. The maximum dielectric tunability (E=50 kV/cm, 10 kHz) was 58.4% at x=0.25.
机译:采用传统的固相烧结法制备了(1-x)BaTiO3-x(Bi2O3,Sm2O3)(BT-BS,x = 0.1,0.15,0.2,0.25,0.3)陶瓷。分析了结构,温度和频率对介电可调性,铁电弛豫特性和介电损耗的影响。 XRD相分析表明,主晶相为BaTiO3钙钛矿结构,还生成Bi7.68Ti0.32O12.16第二相。用SEM对表面形貌进行分析,发现随着BS含量的增加,第二相的生成和孔隙率降低。同时,Sm3 +的增加促进了晶体颗粒的生长。介电常数-温度曲线逐渐趋于平坦,这表明铁电陶瓷的弛豫特性逐渐显现。随着BS的掺杂,居里温度点逐渐降低。介电损耗与温度之间的关系表明,当温度超过150摄氏度时,介电损耗增加。这主要与高温下的弛豫极化有关。在直流施加电场和室温的作用下,介电损耗和介电常数随BS含量的增加而降低。同时,当复合相出现时,介电可调性得到改善。在x = 0.25时,最大介电可调性(E = 50kV / cm,10kHz)为58.4%。

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