Mechanical and thermal behavior of plantain peel powder filled recycled polyethylene composites

IF 1 Q4 CHEMISTRY, MULTIDISCIPLINARY Ovidius University Annals of Chemistry Pub Date : 2021-07-01 DOI:10.2478/auoc-2021-0017
J. Jacob, P. Mamza
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Abstract

Abstract In the arduous search for ways to clean up the environment and produce viable materials from waste plastics; plantain peel powder filled low density polyethylene wastes (wLDPE) were developed through melt mixing and compression moulding techniques. Optimum properties were determined at 15, 55 and 30 % formulation of plantain peel powder, and Kankara clay respectively. Composition with optimum properties has tensile strength of 55.5 MPa, flexural strength of 50.45 MPa and elastic modulus of 2.30 GPa with corresponding minimal water absorption of 0.95% after 30 days immersion period at room temperature. The thermal properties investigated by Dynamic Mechanical Analysis showed that the composite has better thermal stability at higher temperature than wLDPE. Similarly, through creep analysis, the composite was observed to have better load bearing capability at elevated temperature than waste low density polyethylene material. These results indicate that incorporation of treated plantain peel powder and Kankara clay into wLDPE enhanced the mechanical, thermal and creep resistance of wLDPE. This implies load bearing capability and potential suitability for different wall tiles applications.
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车前草皮粉末填充再生聚乙烯复合材料的力学和热性能
在艰难地寻找清洁环境和从废塑料中生产可行材料的方法中;采用熔融混合和压缩成型技术,研制了车前草皮粉末填充低密度聚乙烯废弃物(wLDPE)。测定了车前草皮粉和坎卡拉泥在15%、55%和30%配方下的最佳性能。室温浸泡30 d后,抗拉强度为55.5 MPa,抗折强度为50.45 MPa,弹性模量为2.30 GPa,最小吸水率为0.95%,性能最佳。动态力学分析表明,该复合材料在高温下的热稳定性优于wLDPE。同样,通过蠕变分析,发现复合材料比废低密度聚乙烯材料具有更好的高温承载能力。结果表明,掺入处理过的车前草皮粉和坎卡拉粘土后,wLDPE的力学性能、耐热性能和蠕变性能均有所提高。这意味着承载能力和潜在的适用性不同的墙砖应用。
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来源期刊
Ovidius University Annals of Chemistry
Ovidius University Annals of Chemistry CHEMISTRY, MULTIDISCIPLINARY-
自引率
11.10%
发文量
20
审稿时长
5 weeks
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