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Preparation of zinc and calcium hydroxide-modified fly ash and its utilization as filler in nylon 6

机译:锌和氢氧化钙改性的粉煤灰的制备及其在尼龙6中的填料用途

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摘要

In this article, an attempt is made to improve the filler-loading capacity of fly ash (FA) by its surface modification with zinc hydroxide and calcium hydroxide. In the modification reaction, FA to calcium hydroxide weight ratio was maintained constant at 5:1, while that of FA to zinc hydroxide was varied as 5:0.4, 5:0.6, and 5:0.8 and the optimized composition was utilized as filler in nylon 6. Modified FA was found to have formed hemimorphite on to its surface, giving rise to spine-structured surface morphology. FA surface modified with 5:0.6 weight ratio of FA to zinc hydroxide (FaZn6Ca) provided FA with the highest level of spine-structured surface morphology and thus was determined to the optimized composition to be utilized as filler in nylon 6. Concentration of FaZn6Ca was varied up to 40 phr in nylon 6. Prepared composites were characterized for mechanical, thermal, rheological, crystallinity, and morphological properties. Melting and crystallization temperatures remained approximately constant; tensile strength, flexural strength, crystallinity, tensile modulus, flexural modulus, enthalpy of melting (H-m), and enthalpy of crystallization increased, whereas elongation at break and impact strength decreased with increase in FaZn6Ca concentration in nylon 6. Spine-structured surface morphology formed on the surface of FA increased the filler-loading capacity of FaZn6Ca in nylon 6; while the improvement in the properties were caused due to better interactions happening between nylon 6 and FaZn6Ca due to the hydrophilic nature of both the materials. Since FA is obtained as waste from thermal power plant, the use of this material as a filler in nylon 6 would help ease the solid waste disposal problem which will benefit the environment.
机译:在本文中,试图通过用氢氧化锌和氢氧化钙进行表面改性来提高粉煤灰(FA)的填料负载能力。在改性反应中,FA与氢氧化钙的重量比保持恒定在5:1,而FA与氢氧化锌的重量比变化为5:0.4、5:0.6和5:0.8,并且将优化的组成用作填充料。尼龙6.发现改性的FA在其表面上形成了半晶石,从而形成了脊柱结构的表面形态。用FA与氢氧化锌(FaZn6Ca)的重量比为5:0.6改性的FA表面使FA具有最高水平的脊柱结构表面形态,因此被确定为最适合用作尼龙6填料的组成。在尼龙6中的最大变化量为40 phr。对制备的复合材料进行了机械,热,流变,结晶度和形态学特性表征。熔融和结晶温度基本保持恒定;随着尼龙6中FaZn6Ca浓度的增加,拉伸强度,弯曲强度,结晶度,拉伸模量,弯曲模量,熔融焓(Hm)和结晶焓增加,而断裂伸长率和冲击强度降低。在FA的表面上,增加了尼龙6中FaZn6Ca的填充能力。同时由于两种材料的亲水性,尼龙6和FaZn6Ca之间发生了更好的相互作用,从而提高了性能。由于FA是从火力发电厂获得的废物,因此将该材料用作尼龙6中的填料将有助于缓解固体废物处理问题,这将对环境有利。

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