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A Comparative Study on Dielectric, Structure, and Thermal Behavior of Micro- and Nano-Sized CCTO in Nylon 6,9 Matrix

机译:尼龙6,9矩阵中微型和纳米Ccto的介质,结构和热行为的比较研究

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Calcium copper titanium oxalate CaCu3Ti4O12 (CCTO) particles as a filler with both micro-and nano-sized into nylon 6,9 polymer have been investigated under structural, thermal, and dielectric properties to find that particle satisfy all the same. Micro-sized CCTO particles (point out as mCCTO) was synthesized using solid-state route using ball milling and nano-sized CCTO particles (point out as nCCTO) was synthesized using complex oxalate precursor route. Fabrication of nylon 6,9/CCTO composite for both micro-and nanosized CCTO particles were employed separately into nylon 6,9 matrix and examined comparatively. The composite containing 20 vol% of nCCTO achieve 24.5 dielectric permittivity at 100 Hz in room temperature that was significantly higher than mCCTO which was 14 at the same condition. From the structural analysis, we obtained that the nCCTO was well dispersed in the matrix medium, whereas the mCCTO were also dispersed with some agglomeration that was the reason for the interaction failure between the particles and matrix material. The dielectric permittivity results obtained from this study specify that the composite containing nano-sized CCTO particles may be suitable for energy storage devices and in the higher temperature sensor applications. (C) 2015 Society of Plastics Engineers
机译:在结构,热和电介质特性下研究了具有微且纳米大小的微型和纳米大小的填料作为填料的氧化钙钛钛颗粒,以发现颗粒满足所有相同的粒子。使用使用球磨的固态路线合成微尺寸的CCTO颗粒(指出作为MCCTO),并使用复合的草酸酯前体途径合成了使用球磨的固态路线(指出作为NCCTO)的纳米大小的CCTO颗粒。将尼龙6,9 / CCTO复合材料的制备分别用于尼龙6,9基质中的尼龙6,9基质中,并相比检查。含有20Vol%NCCTO的复合材料在室温下在100Hz中达到24.5介电介电常数,其显着高于MCCTO,其在相同条件下为14。从结构分析中,我们得到的是,NCCTO很好地分散在基质培养基中,而MCCTO也分散在一些聚集中,这是颗粒和基质材料之间相互作用失效的原因。从该研究中获得的介电介电常数结果指定了含有纳米大小的CCTO颗粒的复合材料可以适用于能量存储装置和更高的温度传感器应用。 (c)2015年塑料工程师协会

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