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Polypropylene/basalt thick film composites: structural, mechanical and dielectric properties

机译:聚丙烯/玄武岩厚膜复合材料:结构,机械和介电性能

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In this work, polypropylene/volcanic basalt rock (PP/VBR) thick film composites with different VBR powder mass ratio varying from 0.5 wt.% to 20.0 wt.% were prepared by using the hot press technique. The effects of VBR powder doping on mechanical, structural and dielectric properties of PP were investigated by stress-strain measurements, Fourier transform infrared analysis, thermal gravimetric analysis, scanning electron microscopy and dielectric spectroscopy methods. The highest tensile strength, percentage strain and energy at break were achieved for 0.5 wt.% VBR powder doped PP composite. According to the stress-percentage strain curves of the samples, it was observed that 0.5 wt.% VBR powder doping increases the mechanical performance of PP polymer. In addition, regardless of the doping concentration level of basalt powder, the real part of complex dielectric function (ε′) of all PP composites display approximately frequency independent behavior between 100 Hz and 1 MHz. On the other hand, 0.5 wt.% VBR powder doped PP composite has also the lowest dielectric constant at the vicinity of 2.7 between 100 Hz and 1 MHz. The composite also has considerably low dielectric loss which has a crucial importance for technological applications. For these reasons, PP/0.5 wt.% VBR composite with the highest tensile strength can be considered as a suitable candidate for microelectronic devices. Furthermore, the alternative current conductivity mechanism was determined as nearly constant loss due to approximately constant dielectric loss between 10 Hz and 1 MHz.
机译:在这项工作中,聚丙烯/火山玄武岩岩石(PP / VBR)厚膜复合材料,具有不同VBR粉末质量比,从0.5重量%改变。通过使用热压技术制备%至20.0重量%。通过应力 - 应变测量,傅里叶变换红外分析,热重分析,扫描电子显微镜和介电光谱法研究了VBR粉末掺杂对PP机械,结构和介电性能的影响。达到最高拉伸强度,百分比应变和能量的0.5重量%。%VBR粉末掺杂PP复合材料。根据样品的应力百分比应变曲线,观察到0.5重量%。%VBR粉末掺杂增加PP聚合物的机械性能。另外,无论玄武岩粉末的掺杂浓度水平如何,所有PP复合材料的复介质函数(ε')的实部显示在100Hz和1MHz之间的近似频率独立行为。另一方面,0.5重量%。%VBR粉末掺杂PP复合材料在100Hz和1MHz之间的2.7周附近也具有最低介电常数。复合材料还具有明显的低介电损耗,对技术应用具有至关重要的重要性。由于这些原因,PP / 0.5重量%。具有最高拉伸强度的%VBR复合材料可以被认为是微电子器件的合适候选者。此外,由于10Hz和1MHz之间的近似恒定的介电损耗,替代电流电导率机制被确定为几乎恒定的损耗。

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