首页> 外文会议>International conference of Microscopy Society of Thailand >Physical, Dielectric Properties and Micro-Hardness of the (Ba_(0.90)Ca_(0.10))_(0.90)(Na_(0.50)Bi_(0.50))_(0.10)TiO_3 Ceramics Prepared by Molten Salt Method
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Physical, Dielectric Properties and Micro-Hardness of the (Ba_(0.90)Ca_(0.10))_(0.90)(Na_(0.50)Bi_(0.50))_(0.10)TiO_3 Ceramics Prepared by Molten Salt Method

机译:熔融盐法制备的(Ba_(0.90)Ca_(0.10))_(0.90)(Na_(0.50)Bi_(0.50))_(0.10)TiO_3陶瓷的物理,介电性能和显微硬度

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In this study, the physical properties, dielectric properties, and micro-hardness of (Ba_(0.90)Ca_(0.10))_(0.90)(Na_(0.50)Bi_(0.50))_(0.10)TiO_3 or BCT-NBT ceramics prepared by molten salt method with various sintering temperatures were investigated. The powders were calcined at 500-1100℃ for 4 h with heating rate of 5℃/min. It was found that the optimum calcination condition was 1000℃ for 4 h. These powders were pressed and sintered at 1200-1400℃ for 3 h with a heating rate of 5℃/min. The microstructure was examined by scanning electron microscope (SEM). The density of the sintered samples was measured by Archimedes method with distilled water as the fluid medium. Dielectric properties were examined by LCR meter. The micro-hardness of the BCT-NBT ceramics was determined using the Vickers and Knoop indentation techniques. The results showed that the average grain sizes increased with increasing sintering temperatures. At sintering temperatures higher than 1200℃, the fracture mode changed from partial intra-granular to mainly intra-granular. The sintering temperature at which the density, dielectric and hardness properties were maximal was 1350℃. The highest density was about 5.4 g/cm~3, and the Vickers and Knoop micro-hardnesses were 6.6 and 6.4 GPa, respectively. The dielectric constant at the Curie temperature was 3682 and the dielectric loss was 0.01 at 1 kHz frequency.
机译:在这项研究中,(Ba_(0.90)Ca_(0.10))_(0.90)(Na_(0.50)Bi_(0.50))_(0.10)TiO_3或BCT-NBT陶瓷的物理性质,介电性质和显微硬度研究了用熔盐法在不同的烧结温度下制备的方法。将粉末在500-1100℃下以5℃/ min的加热速率煅烧4小时。发现最佳焙烧条件为1000℃4h。将这些粉末压制并在1200-1400℃下以5℃/ min的加热速率烧结3小时。通过扫描电子显微镜(SEM)检查微观结构。烧结样品的密度通过阿基米德法以蒸馏水作为流体介质来测量。用LCR仪检查介电性能。 BCT-NBT陶瓷的显微硬度是使用维氏和努氏压痕技术确定的。结果表明,平均晶粒度随烧结温度的升高而增加。在高于1200℃的烧结温度下,断裂模式从部分颗粒内转变为主要颗粒内。密度,介电和硬度性能达到最大值的烧结温度为1350℃。最高密度约为5.4 g / cm〜3,维氏和努氏显微硬度分别为6.6和6.4 GPa。居里温度下的介电常数为3682,在1 kHz频率下的介电损耗为0.01。

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