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Study of nonlinear nanoparticles doped silicone rubber composites and its dielectric properties

机译:非线性纳米粒子掺杂硅橡胶复合材料及其介电性能的研究

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For the purpose of changing dielectric behavior of silicone rubber composites to obtain desirable dielectric properties, variety of inorganic particles fillers were doped into silicone rubber composites. In this paper we researched the dielectric properties of silicone rubber composites doped by nonlinear fillers, including zinc oxide(ZnO) with the size of 40nm and barium strontium titanate (BST) with the size of 200nm and measured the dielectric constant (εr), dielectric loss angle tangent (tanδ) and resistivity(ρ). Various mass fractions (0%,10% and 24%) of nanosized nonlinear powder (BST and ZnO)are doped into silicone rubber to obtain multi-phase dielectric composites. The parameters were measured at room temperature and different electric field with the intensity increased from 103V m-1 to 107 V m-1 was applied. The result showed that BST and ZnO fillers tended to exhibit enhanced dielectric constant and lower tan because of the increase of effective mass fraction. The influence mechanism were discussed in accordance with the mass fractions, electric intensity and polarization mode of each kind of nonlinear fillers.
机译:为了改变硅橡胶复合材料的介电性能以获得所需的介电性能,将各种无机颗粒填料掺杂到硅橡胶复合材料中。在本文中,我们研究了由非线性填料(包括尺寸为40nm的氧化锌(ZnO)和尺寸为200nm的钛酸锶钡(BST))掺杂的硅橡胶复合材料的介电性能,并测量了介电常数(εr),介电常数损耗角正切(tanδ)和电阻率(ρ)。将各种质量分数(0%,10%和24%)的纳米级非线性粉末(BST和ZnO)掺杂到硅橡胶中,以获得多相电介质复合材料。在室温下测量参数,并施加强度从103V m-1增加到107 V m-1的不同电场。结果表明,由于有效质量分数的增加,BST和ZnO填料趋向于表现出增强的介电常数和较低的tan值。根据每种非线性填料的质量分数,电强度和极化模式,探讨了其影响机理。

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