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Gas Barrier, Thermal, Mechanical and Rheological Properties of Highly Aligned Graphene-LDPE Nanocomposites

机译:高度取向的石墨烯-LDPE纳米复合材料的阻气性,热,机械和流变特性

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This contribution reports on properties of low-density polyethylene-based composites filled with different amounts of graphene nanoplatelets. The studied samples were prepared in the form of films by means of the precoating technique and single screw melt-extrusion, which yields a highly ordered arrangement of graphene flakes and results in a strong anisotropy of composites morphology. The performed tests of gas permeability reveal a drastic decrease of this property with increasing filler content. A clear correlation is found between permeability and free volume fraction in the material, the latter evaluated by means of positron annihilation spectroscopy. A strong anisotropy of the thermal conductivity is also achieved and the thermal conductivity along the extrusion direction for samples filled with 7.5 wt % of GnP (graphene nanoplatelets) reached 2.2 W/m·K. At the same time, when measured through a plane, a slight decrease of thermal conductivity is found. The use of GnP filler leads also to improvements of mechanical properties. The increase of Young’s modulus and tensile strength are reached as the composites become more brittle.
机译:该贡献报告了填充有不同数量石墨烯纳米片的低密度聚乙烯基复合材料的性能。所研究的样品通过预涂技术和单螺杆熔融挤出以薄膜形式制备,这产生了石墨烯薄片的高度有序排列,并导致了复合材料形态的强各向异性。进行的透气性测试表明,随着填料含量的增加,该性能急剧下降。在材料的渗透率和自由体积分数之间发现了明确的相关性,后者通过正电子an没光谱法进行了评估。还实现了强的热导率各向异性,并且填充了7.5 wt%的GnP(石墨烯纳米片)的样品沿挤出方向的热导率达到2.2 W / m·K。同时,通过平面测量时,发现导热系数略有下降。 GnP填料的使用还可以改善机械性能。随着复合材料变脆,杨氏模量和抗张强度将增加。

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