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Mercerization Effect on Bio-waste Eggshell Reinforced Polymer Composite for Energy Saving Application

机译:生物废蛋蛋壳增强聚合物复合材料的丝光型效果

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Polymer composite from biowaste material have gained enough interest by its unique light weight, high strength, high corrosion resistance, affordability, pollution free, renewability and ecofriendly natures. These important factors are relevant to form an energy efficient domain which will boost the fuel economy in many engineering and industrial sectors. In present study, composite material has developed from waste chicken eggshells (CES). Existing hydrophilic semipermeable membrane in eggshell create trouble during the development of composite with hydrophobic matrix. So (CES)/matrix interface was modified by treating CES with sodium hydroxide chemical which better known as "Mercerization". Structural, morphological, vibrational and mechanical properties were investigated both for untreated and treated CES particle as well as composites. Structural result showed an increase in crystallite size of ESP which indicated the additional crystal growth in crystalline region. A smooth surface with porous membrane were spotted from morphological study. Combinely, porous membrane and crystallite size increment facilitated the interfacial bonding between ESP/matrix which may cause the improvement in mechanical properties of composites.
机译:来自BioWaste材料的聚合物复合材料通过其独特的重量轻,强度,高耐腐蚀,可负担性,无污染,可再生性和Ecofriendly的自然来获得足够的兴趣。这些重要因素与形成能量有效的领域是相关的,这将提高许多工程和工业部门的燃油经济性。在目前的研究中,复合材料已从废鸡蛋壳(CES)开发。蛋壳中存在的亲水性半透膜在疏水基质复合材料开发过程中产生麻烦。因此,通过用氢氧化钠化学物质处理CES来修饰(CES)/基质界面,其更好地称为“丝光”。研究了针对未处理和处理的CES颗粒以及复合材料的结构,形态,振动和机械性能。结构结果表明,微晶尺寸的增加,表明结晶区域的额外晶体生长。用形态学研究发现具有多孔膜的光滑表面。结合,多孔膜和微晶尺寸增量促进了ESP /基质之间的界面键合,这可能导致复合材料的机械性能的改善。

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