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Effect of processing on the positive temperature coefficient of resistivity in lead metaplumbate/polyethylene composites

机译:加工工艺对偏铅酸铅/聚乙烯复合材料电阻率正温度系数的影响

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摘要

The positive temperature coefficient of resistivity (PTCR) effect of a barium metaplumbate/polyethylene [(BaPbO3)/PE] composite with 12 vol% of BaPbO3 was studied. The composite samples were prepared by hot-pressing a mixture of BaPbO3 ceramic and high-density polyethylene powders around the melting point of polyethylene. The composites exhibit a pronounced PTCR effect of up to a six-decade increase in resistivity within a narrow range of temperature (similar to 10 degrees C). The dependences of the room temperature resistivity and the magnitude of the resistivity jump an the pressing and annealing temperature, and the electrical behavior after repeated heating-cooling cycles were investigated. The fracture surfaces of the composite samples were examined in a scanning electron microscope in order to correlate the electrical behavior with the microstructure. [References: 10]
机译:研究了含12%(体积)BaPbO3的偏铅酸钡/聚乙烯[(BaPbO3)/ PE]复合材料的电阻率正温度系数(PTCR)效应。复合样品是通过将BaPbO3陶瓷和高密度聚乙烯粉末的混合物在聚乙烯的熔点附近热压制成的。该复合材料在很窄的温度范围内(类似于10摄氏度)显示出显着的PTCR效果,电阻率可提高多达六个十年。室温电阻率和电阻率的大小随压力和退火温度的变化而变化,并研究了反复加热-冷却循环后的电性能。在扫描电子显微镜中检查复合样品的断裂表面,以使电性能与微观结构相关联。 [参考:10]

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