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首页> 外文期刊>Journal of Applied Polymer Science >Design and fabrication of flexible poly(vinyl chloride) dielectric composite reinforced with ZnO microvaristors
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Design and fabrication of flexible poly(vinyl chloride) dielectric composite reinforced with ZnO microvaristors

机译:用ZnO微控制器加固柔性聚(氯乙烯)介电复合材料的设计与制造

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摘要

Flexible poly(vinyl chloride)/varistor composites were fabricated by solution casting method. High-field ZnO varistor particles processed from micron-sized Zn dust is explored as multifunctional filler for PVC composites. Mechanical blending of Zn dust with La2O3-CeO2 rare earths and varistor forming minor additives followed by sintering at 1250 degrees C resulted in fine-grained ZnO varistors. Bulk varistor was subsequently milled to obtain ZnO microvaristor grains. The effect of microvaristor on the UV stability, dielectric, and mechanical properties of the PVC composite was analyzed. The varistor filler in PVC enhanced the microhardness and retained the tensile properties without any significant loss. After UV irradiation PVC/varistor composite shows remarkable mechanical stability retention (95%) compared to pure PVC (75%). Also, microvaristor reinforcement resulted in dielectric constant tunability (=2-37) without any drastic change in the dielectric loss (0.02-0.05). Thus, Zn dust-derived ZnO varistors could be potentially exploited to design functional PVC composites for electronic applications. (c) 2017 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2018, 135, 46031.
机译:通过溶液铸造方法制造柔性聚(氯乙烯)/压敏电阻复合材料。从微米尺寸的Zn粉尘处理的高场ZnO压敏电阻颗粒被探索为PVC复合材料的多功能填料。用La2O3-CeO2稀土和压敏电阻形成少数添加剂的Zn粉尘,然后在1250℃下烧结,导致细粒ZnO变阻器。随后研磨体压敏电阻以获得ZnO微控制器晶粒。分析了微聚体对PVC复合材料的UV稳定性,电介质和力学性能的影响。 PVC中的压敏电阻填料增强了显微硬度并保留了拉伸性能而没有任何显着损失。与纯PVC(75%)相比,UV辐射PVC /压敏电阻复合材料显示出显着的机械稳定性保留(95%)。此外,微控制器加强件导致介电常数可调性(= 2-37),介电损耗(0.02-0.05)中没有任何激烈变化。因此,Zn粉尘衍生的ZnO变阻器可以潜在地利用以设计用于电子应用的功能PVC复合材料。 (c)2017 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2018,135,46031。

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