首页> 外文期刊>International Journal of Molecular Sciences >The Influence of Green Surface Modification of Oil Palm Mesocarp Fiber by Superheated Steam on the Mechanical Properties and Dimensional Stability of Oil Palm Mesocarp Fiber/Poly(butylene succinate) Biocomposite
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The Influence of Green Surface Modification of Oil Palm Mesocarp Fiber by Superheated Steam on the Mechanical Properties and Dimensional Stability of Oil Palm Mesocarp Fiber/Poly(butylene succinate) Biocomposite

机译:过热蒸汽对油棕中果皮纤维的绿色表面改性对油棕中果皮纤维/聚丁二酸丁二醇酯复合材料力学性能和尺寸稳定性的影响

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In this paper, superheated steam (SHS) was used as cost effective and green processing technique to modify oil palm mesocarp fiber (OPMF) for biocomposite applications. The purpose of this modification was to promote the adhesion between fiber and thermoplastic. The modification was carried out in a SHS oven at various temperature (200–230 °C) and time (30–120 min) under normal atmospheric pressure. The biocomposites from SHS-treated OPMFs and poly(butylene succinate) (PBS) at a weight ratio of 70:30 were prepared by melt blending technique. The mechanical properties and dimensional stability of the biocomposites were evaluated. This study showed that the SHS treatment increased the roughness of the fiber surface due to the removal of surface impurities and hemicellulose. The tensile, flexural and impact properties, as well as dimensional stability of the biocomposites were markedly enhanced by the presence of SHS-treated OPMF. Scanning electron microscopy analysis showed improvement of interfacial adhesion between PBS and SHS-treated OPMF. This work demonstrated that SHS could be used as an eco-friendly and sustainable processing method for modification of OPMF in biocomposite fabrication.
机译:在本文中,过热蒸汽(SHS)被用作具有成本效益的绿色加工技术来改性油棕中果皮纤维(OPMF),以用于生物复合材料。进行这种改性的目的是促进纤维与热塑性塑料之间的粘合。修改是在SHS烤箱中于正常大气压下在各种温度(200–230°C)和时间(30–120分钟)下进行的。通过熔融共混技术,由SHS处理过的OPMF和聚(丁二酸丁二酯)(PBS)以70:30的重量比制备生物复合材料。评价了生物复合材料的机械性能和尺寸稳定性。这项研究表明,由于去除了表面杂质和半纤维素,SHS处理增加了纤维表面的粗糙度。 SHS处理过的OPMF的存在显着增强了生物复合材料的拉伸,挠曲和冲击性能以及尺寸稳定性。扫描电子显微镜分析显示,PBS和经SHS处理的OPMF之间的界面粘附性得到改善。这项工作表明,SHS可以用作生物复合材料制造中OPMF改性的一种生态友好和可持续的加工方法。

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