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Influence of casting velocity on surface resistivity of epoxy-hard coal graded composites

机译:铸造速度对环氧-硬煤梯度复合材料表面电阻率的影响

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Purpose: of this paper was to describe electrical properties of epoxy-hard coal functionally gradient polymeric materials. The experimental part describes preparation of the cylindrical samples of the polymeric gradient material by centrifugal casting method. Influence of casting velocity on electrical surface resistance and surface resistivity was measured and analysed.Design/methodology/approach: The specimens were prepared using centrifugal casting method. Composites with epoxy resin as a matrix and with respectively 3; 4.32; 7.5; 10.68 and 12%vol of two hard coal types as a filler were cast. Surface resistivity was applied as a measure of electrical properties. The idea of the test was to define electrical resistivity in radial direction with different content and type of conductive component (hard coal). First, specimen's diameter was measured and electrical resistivity was tested. Next, outer layer with thickness about 0,1 mm was removed by tur ning and electrical measurements performed. The procedure was repeated for all subsequent layers.Findings: The experimental results demonstrated that casting velocity have pronounced influence on surface resistivity of these materials. Hard coal together with epoxy resin formed gradient composite material with different filler content in subsequent layers.Research limitations/implications: The generated graded structure could be controlled only in limited extend by varying rotation speed and material characteristics of components, such as hard coal content and particles size and shape.Originality/value: Hard coal particles were distributed in epoxy resin by centrifugal casting method in order to create functionally graded materials (FGMs). At present, no information is available on the influence of the casting velocity on the electrical properties of these composites. This paper is original also because in the research programme electrical properties of new type of polymeric gradient composites were tested and presented
机译:目的:本文旨在描述环氧-硬煤功能梯度聚合物材料的电性能。实验部分描述了通过离心铸造法制备聚合物梯度材料的圆柱形样品。测量并分析了铸造速度对表面电阻和表面电阻率的影响。设计/方法/方法:采用离心铸造法制备试样。以环氧树脂为基质并分别为3的复合材料; 4.32; 7.5;铸造了两种硬煤类型的填充物,分别为10.68和12%vol。应用表面电阻率作为电性能的量度。该测试的目的是在径向方向上定义不同含量和类型的导电成分(硬煤)的电阻率。首先,测量样品的直径并测试电阻率。接下来,通过研磨除去厚度约为0.1mm的外层并进行电学测量。结果:实验结果表明浇铸速度对这些材料的表面电阻率有明显影响。硬煤与环氧树脂在随后的层中形成具有不同填料含量的梯度复合材料。研究局限/意义:只能通过改变旋转速度和组件的材料特性(例如硬煤含量和颗粒大小和形状。原始物/值:硬煤颗粒通过离心铸造法分布在环氧树脂中,以产生功能梯度材料(FGM)。目前,没有关于铸造速度对这些复合材料的电性能的影响的信息。本文也是原创的,因为在研究程序中测试并介绍了新型聚合物梯度复合材料的电性能

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