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Microstructure and Electrical Properties of Microwave-Sintered PTC Thermistors

机译:微波烧结PTC热敏电阻的组织和电性能

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BaTiO_3—based positive temperature coefficient (PTC) thermistors have been prepared by microwave sintering. The sintering process was carried out in a 2.45 GHz multimode microwave tube furnace without any susceptor. The heating behavior of the PTC material, influence of processing conditions on microstructure, and electrical properties of the sintered samples were investigated. The sintering temperature range varied from 1275℃ to 1350℃. The optimum density and microstructure were achieved between 1300℃ to 1325℃. Samples were also microwave sintered at 1300℃ for various soaking times from 10 min to 90 min. It was found that soaking between 30 min to 60 min generated a uniform microstructure. Cooling rate varied from 7.5℃/min to 2℃/min. The study showed that the cooling rate has an influence on PTC effect but not on microstructure. Slower cooling rate is essential for achieving better PTC effect. Compared to conventional method, the microwave-processed samples exhibited higher density and better PTC effect. The relative density of microwave sample was 93.5%, compared to 90.2% of the conventional sample. The R_(25), α_T, T_c, and R_(max) of the microwave sintered samples are 17.6 Ω, 15.8, 6.7 x10~5, 88.0℃, and 11.5 MΩ, respectively compared to 12.1 Ω, 14.6, 1.1 x 10~5, 88.1℃, and 1.3 MΩ, respectively, for the conventional sample.
机译:通过微波烧结制备了基于BaTiO_3的正温度系数(PTC)热敏电阻。烧结过程在没有任何基座的2.45 GHz多模微波管式炉中进行。研究了PTC材料的加热行为,加工条件对微观结构的影响以及烧结样品的电性能。烧结温度范围为1275℃至1350℃。在1300℃至1325℃之间达到了最佳的密度和微观结构。样品也在1300℃微波烧结10分钟到90分钟的各种浸泡时间。发现在30分钟至60分钟之间的浸泡产生均匀的微观结构。冷却速度从7.5℃/ min到2℃/ min不等。研究表明,冷却速率对PTC效应有影响,但对显微组织没有影响。较低的冷却速度对于实现更好的PTC效果至关重要。与常规方法相比,微波处理后的样品具有更高的密度和更好的PTC效果。微波样品的相对密度为93.5%,而常规样品的相对密度为90.2%。微波烧结样品的R_(25),α_T,T_c和R_(max)分别为17.6Ω,15.8,6.7 x10〜5、88.0℃和11.5MΩ,而12.1Ω,14.6、1.1 x 10〜常规样品分别为5、88.1℃和1.3MΩ。

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