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On the graphene nanoplatelets reinforcement of extruded high density polyethylene

机译:在石墨烯纳米片上增强挤出高密度聚乙烯

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摘要

The present paper is dealing with the reinforcement of high density polyethylene (HDPE) matrix using pre-dried graphene nanoplatelets (GNPs). Nanocomposites of three different wt GNPs contents, i.e. 1%, 2% and 3%, were produced. The so-obtained extruded GNPs/HDPE nanocomposites underwent both tensile and three-point bending tests. Ultimate tensile strength was not affected by the GNPs content. However, the response on plastic deformation under tensile loading differed in each case, depending on the microstructure of the produced nanocomposites. Due to the weak Van der Waals forces that bond the graphene layers into a GNP, these layers are allowed to slip in the in-plane level and they were observed dislocated after tensile loading. Pores with high GNPs concentration were detected for GNPs contents greater than 1%. The flexural response was enhanced and flexural strength values were also correlated with the dimensions of the pores formed.
机译:本文涉及使用预干燥的石墨烯纳米片(GNP)增强高密度聚乙烯(HDPE)基体。产生了三种不同的wt GNP含量,即1%,2%和3%的纳米复合材料。如此获得的挤出的GNP / HDPE纳米复合材料经历了拉伸和三点弯曲测试。极限拉伸强度不受GNP含量的影响。但是,在每种情况下,拉伸应力对塑性变形的响应都不同,这取决于所生产的纳米复合材料的微观结构。由于将石墨烯层粘合到GNP的范德华力弱,这些层被允许在平面内滑动,并且在拉伸载荷后被观察到它们错位。检测到高GNP浓度的毛孔中GNP含量大于1%。弯曲响应增强,弯曲强度值也与形成的孔的尺寸相关。

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