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首页> 外文期刊>International Journal of Polymer Science >Influence of Ethylene Plasma Treatment of Agave Fiber on the Cellular Morphology and Compressive Properties of Low-Density Polyethylene/Ethylene Vinyl Acetate Copolymer/Agave Fiber Composite Foams
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Influence of Ethylene Plasma Treatment of Agave Fiber on the Cellular Morphology and Compressive Properties of Low-Density Polyethylene/Ethylene Vinyl Acetate Copolymer/Agave Fiber Composite Foams

机译:龙腰纤维乙烯等离子体处理对低密度聚乙烯/乙烯乙烯基乙酸乙烯酯/龙舌兰纤维复合泡沫的细胞形态和压缩性能的影响

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Agave fibers (AF) were incorporated either pristine (AF p ) or surface treated by ethylene plasma (AF m ) in low-density polyethylene (LDPE)/ethylene vinyl acetate (EVA) blends at a ratio of 1?:?1 and foamed by chemical means. The role of the AF content (3, 6, 9, 12, and 15?wt.%) and its surface modification on the cellular morphology and mechanical properties of LDPE/EVA/AF foams under compression is investigated herein. Fourier transform-infrared spectroscopy, contact angle, and water suspension of AF suggest that plasma treatment using ethylene successfully modifies the surface nature of AF from hydrophilic to hydrophobic. AF and the surface treatment have an important role on the morphological properties of the foams. Composite foams reinforced with 12?wt.% AF m exhibited the highest mechanical properties improvements. At this fiber content, the composite foams enhanced 30% of the compressive modulus and 23% of the energy absorption under compression with respect to the neat polymer blend foam, as a result to the formation of more uniform cells with smaller size and the enhancement of compatibility and spatial distribution of the AF m in the polymer composite foams due to thin clusters of polyethylene-like polymer deposited on the AF surface.
机译:龙舌兰纤维(AF)中任一原始(AF p)的掺入或表面由乙烯等离子(AF米)的低密度聚乙烯(LDPE)/乙烯醋酸乙烯酯(EVA)以1:1的比例的共混物进行处理:?1和发泡通过化学手段。的AF含量(3,6,9,12,和15?%(重量))和它的表面改性的细胞形态和LDPE / EVA / AF的机械性能的作用下泡沫压缩在本文中研究。傅里叶变换红外光谱,接触角,和AF的水悬浮液表明,利用等离子体处理乙烯成功修改AF的表面性质从亲水到疏水性的。 AF和表面处理对泡沫的形态特征具有重要作用。复合泡沫材料钢筋12?%(重量)AF米显示出最高的机械性能的改进。在此纤维含量,所述复合泡沫体增强的压缩模量的30%,并且在压缩下的能量吸收相对于纯聚合物共混物泡沫的23%,其结果是,以形成更均匀的细胞与较小的尺寸和所述增强的相容性和在聚合物复合材料泡沫的AF米由于薄簇空间分布聚乙烯状聚合物沉积在AF表面上。

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