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Materials prepared from biopolyethylene and curaua fibers: Composites from biomass

机译:由生物聚乙烯和姜黄纤维制备的材料:生物质复合材料

摘要

Composites of high-density biopolyethylene (HDBPE) obtained from ethylene derived from sugarcane ethanol and curaua fibers were formed by first mixing in an internal mixer followed by thermopressing. Additionally, hydroxyl-terminated polybutadiene (LHPB), which is usually used as an impact modifier, was mainly used in this study as a compatibilizer agent. The fibers, HDBPE and LHPB were also compounded using an inter-meshing twin-screw extruder and, subsequently, injection molded. The presence of the curaua fibers enhanced some of the properties of the HDBPE, such as its flexural strength and storage modulus. SEM images showed that the addition of LHPB improved the adhesion of the fiber/matrix at the interface, which increased the impact strength of the composite. The higher shear experienced during processing probably led to a more homogeneous distribution of fibers, making the composite that was prepared through extruder/injection molding more resistant to impact than the composite processed by the internal mixer/thermopressing. (c) 2012 Elsevier Ltd. All rights reserved.
机译:通过首先在内部混合器中混合,然后进行热压,来形成得自甘蔗乙醇衍生的乙烯的高密度生物聚乙烯(HDBPE)的复合材料。另外,在这项研究中主要使用羟基封端的聚丁二烯(LHPB)(通常用作抗冲改性剂)作为增容剂。纤维,HDBPE和LHPB也使用相互啮合的双螺杆挤出机进行复合,然后注塑。姜黄纤维的存在增强了HDBPE的某些性能,例如其抗弯强度和储能模量。 SEM图像表明,LHPB的加入改善了纤维/基质在界面处的粘附力,从而提高了复合材料的冲击强度。在加工过程中经受的较高剪切力可能导致纤维分布更均匀,这使得通过挤出机/注射成型制备的复合材料比通过内部混合器/热压加工的复合材料更耐冲击。 (c)2012 Elsevier Ltd.保留所有权利。

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