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PTC Characteristics of (TiC/Polyethylene) Conductive Composites in Relation to Their Particle-Filled Structures

机译:(TiC /聚乙烯)导电复合材料的PTC特性及其颗粒填充结构

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Titanium carbide (TiC)/polyethylene (PE) composites have been prepared with various volume fractions of TiC by a melt bleeding method. Two types of TiC powder with their different particle diameters, 1.48 μm (TiC-A) and ca. 100 μm (TiC-B), were utilized in the present study. The electric resistivities (p) of the samples decreased gradually with increasing TiC volume fraction (Φ{sub}A); in the case of smaller particle size, the value of p at room temperature jumped down in the relatively narrow range of Φ{sub}A = 0.39 to 0.42, reaching as low as 0.1 Ωcm. Temperature dependencies of p were also measured to examine the possible application of the composite to polymer PTC thermistors. The resistivity showed positive temperature dependence and changed abruptly in the tenth order of its magnitude during the melting transition of PE. The electric current cutoff characteristics of the samples indicated excellent features in the overcurrent response despite their low resistivity values, as compared with those of other PTC materials. In parallel, the mechanism of conductivity of the composite was discussed in terms of the percolation theory.
机译:碳化钛(TiC)/聚乙烯(PE)复合材料已经通过熔体渗出法制备了各种体积分数的TiC。两种直径不同的TiC粉末为1.48μm(TiC-A)和ca.在本研究中使用了100μm(TiC-B)。样品的电阻率(p)随着TiC体积分数(Φ{sub} A)的增加而逐渐降低;在较小粒径的情况下,室温下的p值在Φ{sub} A = 0.39至0.42的相对较窄的范围内下降,低至0.1Ωcm。还测量了p的温度依赖性,以检查复合材料在聚合物PTC热敏电阻中的可能应用。在PE的熔融转变过程中,电阻率显示出正温度依赖性,并以其幅度的十分之一突然变化。与其他PTC材料相比,样品的电流截止特性尽管电阻率值低,但在过电流响应中仍具有出色的特性。同时,根据渗流理论讨论了复合材料电导率的机理。

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