首页> 外文OA文献 >Thermal, mechanical and rheological behaviors of nanocomposites based on UHMWPE/paraffin oil/carbon nanofiller obtained by using different dispersion techniques.
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Thermal, mechanical and rheological behaviors of nanocomposites based on UHMWPE/paraffin oil/carbon nanofiller obtained by using different dispersion techniques.

机译:基于UHMWPE /石蜡油/碳纳米填料的纳米复合材料的热,机械和流变行为,是通过使用不同的分散技术获得的。

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摘要

Ultra-high molecular weight polyethylene (UHMWPE) is a very attractive polymer employed as a high performance material. For its high viscosity, dispersion of fillers is considered a critical point in UHMWPE nanocomposites preparation process. Currently, paraffin oil (PO) is used extensively to overcome this issue in an assisted melt-mixing process. In this work, we have prepared nanocomposites based on UHMWPE, carbon nanofiller (CNF) and PO mixed by different mixing methods: magnetic stirring, ball milling (BM), ultrasonic and Mini-Lab extruder (EX). The aim of this work was to check the effect of the dispersion method on the mechanical and thermal features of UHMWPE/CNF nano composites in order to obtain a material with improved mechanical and physical properties. The samples were characterized by calorimetric, density, mechanical tensile and rheological analyses. Experimental results highlighted that the nanocomposites produced by EX and BM exhibits the best dispersion, good filler matrix interaction and had significantly improved mechanical properties compared to pure UHMWPE. For instance, for the BM method, the yield strength improved to 18.6 MPa (+96%), the yield strain improved by 60%, while stress at break improved by 13%. In summary, the EX improved the stiffness while the BM produced better ductility, melting temperature and the crystalline degree of the nanocomposites.
机译:超高分子量聚乙烯(UHMWPE)是一种非常有吸引力的聚合物,可用作高性能材料。由于其高粘度,填料的分散被认为是UHMWPE纳米复合材料制备过程中的关键点。当前,石蜡油(PO)被广泛用于在辅助熔融混合过程中克服此问题。在这项工作中,我们制备了基于UHMWPE,碳纳米填料(CNF)和PO的纳米复合材料,这些复合材料通过不同的混合方法混合:磁力搅拌,球磨(BM),超声和微型实验室挤出机(EX)。这项工作的目的是检查分散方法对UHMWPE / CNF纳米复合材料的机械和热学特性的影响,以便获得具有改善的机械和物理性能的材料。通过量热,密度,机械拉伸和流变分析对样品进行表征。实验结果表明,与纯UHMWPE相比,由EX和BM生产的纳米复合材料表现出最佳的分散性,良好的填料基体相互作用并具有显着改善的机械性能。例如,对于BM方法,屈服强度提高到18.6 MPa(+ 96%),屈服应变提高60%,而断裂应力提高13%。总之,EX改善了刚度,而BM则产生了更好的延展性,熔融温度和纳米复合材料的结晶度。

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