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Preparation of highly filled wood flour/recycled high density polyethylene composites by in situ reactive extrusion

机译:原位反应挤出制备高填充木粉/再生高密度聚乙烯复合材料

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摘要

Highly filled wood flour/recycled high density polyethylene (WF/RHDPE) composites were directly prepared by in situ reactive extrusion using a twin-screw/single-screw extruder system. The effects of dicumyl peroxide (DCP) content on extrusion pressure, rheological behavior, mechanical properties, fractured surface morphology of the composites, and melting temperature of RHDPE in the composites were investigated. The extrusion pressure and torque of WF/RHDPE composite melt increased with DCP content. Mechanical property tests and scanning electron microscopy analysis results confirmed that the interfacial interaction of the composites was improved by in situ reaction. The composites show lower melting peak temperature (T _m) than RHDPE. The cooling in profile extrusion shortened the crystallization time, resulting in decrease of crystalline order of RHDPE in the composites. There are no noticeable changes of T _m values with increasing DCP content. Comparative study on composites with maleic anhydride grafted polyethylene as compatibilizer demonstrated that mechanochemical treatment with DCP and maleic anhydride was an effective method to improve interfacial adhesion for WF/RHDPE composites.
机译:高填充木粉/循环使用的高密度聚乙烯(WF / RHDPE)复合材料是使用双螺杆/单螺杆挤出机系统通过原位反应挤出直接制备的。研究了过氧化二枯基(DCP)含量对复合材料挤出压力,流变行为,力学性能,断裂表面形态以及RHDPE熔融温度的影响。 WF / RHDPE复合熔体的挤出压力和扭矩随DCP含量的增加而增加。力学性能测试和扫描电子显微镜分析结果证实,通过原位反应可以改善复合材料的界面相互作用。该复合材料显示出比RHDPE低的熔融峰值温度(T _m)。型材挤出中的冷却缩短了结晶时间,从而降低了复合材料中RHDPE的结晶顺序。随着DCP含量的增加,T _m值没有明显变化。以马来酸酐接枝聚乙烯为增容剂的复合材料的比较研究表明,用DCP和马来酸酐进行机械化学处理是提高WF / RHDPE复合材料界面粘合力的有效方法。

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