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Mechanical and thermal properties of oil palm wood sawdust reinforced post-consumer polyethylene composites

机译:油棕木屑加消费后聚乙烯复合材料的机械和热性能

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摘要

Post-consumer recycled high-density polyethylene (PCR-HDPE) composites reinforced with 30, 40, and50% of oil palm wood sawdust (OWS) were prepared by compression moulding. The effects of the OWS content andthe moulding temperature on the flexural and compressive properties of the composites were investigated and were foundto be highly significant. Increases in the proportion of OWS in the matrix caused a gradual worsening in the mechanicalproperties of the composites. However, higher moulding temperatures moderately improved the mechanical properties.Dynamic mechanical thermal analysis was used to study the viscoelastic behaviour, and thermogravimetric analysis wasused to study the thermal stability of the composites. The storage and loss moduli gradually decreased with increasingtemperature and significantly increased with increasing the proportion of OWS in the composites. The thermal stability ofthe composites slightly dropped with a higher OWS content. These results suggest that PCR-HDPE and OWS can be usedto create composite materials with good mechanical and thermal properties.
机译:通过压缩模制制备用30%,40%和50%的油棕木屑(OWS)增强的消费后回收的高密度聚乙烯(PCR-HDPE)复合材料。研究了OWS含量和模塑温度对复合材料弯曲和压缩性能的影响,发现它们具有很高的意义。 OWS在基体中的比例增加导致复合材料的机械性能逐渐恶化。然而,较高的成型温度适度地改善了机械性能。使用动态机械热分析来研究粘弹性行为,并且使用热重分析来研究复合材料的热稳定性。随着温度的升高,储能模量和损耗模量逐渐降低,随着复合材料中OWS比例的增加,储能模量和损耗模量显着增加。随着OWS含量的增加,复合材料的热稳定性略有下降。这些结果表明,PCR-HDPE和OWS可用于制造具有良好机械和热性能的复合材料。

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  • 作者

    Thanate, Ratanawilai;

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  • 年度 2012
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