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Study and Characterization of the Dielectric Behavior of Low Linear Density Polyethylene Composites Mixed with Ground Tire Rubber Particles

机译:低线密度聚乙烯复合材料与轮胎胶粒介电性能的研究与表征

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摘要

The waste rubber vulcanizate, on account of its stable, cross-linked and three-dimensional structural arrangement, is difficult to biodegrade. Thus, the ever-increasing bulk of worn-out tires is a serious environmental issue and its safe disposal is still a challenging task reported widely by the scientific community. The rubber materials, once they end their useful life, may present difficulties to be reused or recycled. At present, only one tire recycling method is used, which involves grinding and separating steel and fibers from vulcanized rubber, and then using rubber for industrial applications, such as flooring, insulation, footwear. In this paper, a new compound material is presented from a base of reused tire powder (Ground Tire Rubber: GTR) as a mixer and linear low-density polyethylene (LLDPE) as a matrix. The reused tire powder, resulting from grinding industrial processes, is separated by sieving into just one category of particle size (<200 μm) and mixed with the LLDPE in different amounts (0%, 5%, 10%, 20%, 40%, 50% and 70% GTR). Due to the good electrical properties of the LLDPE, this study’s focus is settled on the electrical behavior of the obtained composites. The test of the dielectric behavior is carried out by means of DEA test (Dynamic Electric Analysis), undertaken at a range of temperatures varying from 30 to 120 °C, and with a range of frequencies from 1 to 10 , to 3·10 Hz, from which permittivity, conductivity, dielectric constant and electric modulus have been obtained. From these experimental results and their analysis, it can be drawn that the additions of different quantities of GTR to LLDPE could be used as industrial applications, such as universal electrical cable joint, filler for electrical applications or cable tray systems and cable ladder system.
机译:废橡胶硫化胶由于其稳定,交联和三维结构排列而难以生物降解。因此,越来越多的破旧轮胎是一个严重的环境问题,其安全处置仍然是科学界广泛报道的一项具有挑战性的任务。橡胶材料一旦终止使用寿命,可能会出现难以再利用或回收的困难。目前,仅使用一种轮胎回收方法,该方法涉及将钢和纤维从硫化橡胶中研磨和分离,然后将橡胶用于工业应用,例如地板,绝缘材料,鞋类。在本文中,从一种可重复使用的轮胎粉末(地面轮胎橡胶:GTR)作为混合机以及线性低密度聚乙烯(LLDPE)作为基质的基础上,提出了一种新的复合材料。通过研磨工业过程得到的再利用轮胎粉末可通过筛分到一种粒径(<200μm)的颗粒中进行分离,并与LLDPE以不同的量(0%,5%,10%,20%,40%)混合,GTR为50%和70%)。由于LLDPE具有良好的电性能,因此本研究的重点放在获得的复合材料的电性能上。介电性能测试是通过DEA测试(动态电分析)进行的,温度范围为30至120°C,频率范围为1至10,至3·10 Hz ,由此获得介电常数,电导率,介电常数和电模量。从这些实验结果及其分析,可以得出结论,在LLDPE中添加不同量的GTR可以用作工业应用,例如通用电缆接头,电气应用填充物或电缆桥架系统和电缆梯系统。

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