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Mechanical Properties of MWCNT/Elastomer Nanocomposites and the Cellulation Model

机译:MWCNT /弹性体纳米复合材料和纤维化模型的力学性能

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We fabricated NR matrix composites where multi-wall carbon nanotubes (MWCNTs) were homogeneously dispersed, and their morphology, mechanical properties, and viscoelasticity were investigated. The incorporation of MWCNTs into NR matrix enhanced the tensile strength and the storage moduli of the composites, but the degree of enhancement was reduced when the dispersion of CNTs were not uniform. Even though left uncured, up to 250, MWCNT/NR composites with uniform dispersion remained non-fluid, and, at the same time, free of thermal decomposition caused by chain scission. These unusual thermal properties, comparable to those of cured MWCNT/NR composites, suggested a potential for the recycling of rubber products. These phenomena were assumed to have been caused by the 'cellulation' of the elastomer matrix of the composites, that is to say, the elastomer matrix had been divided into small units by the interfacial region formed around MWCNTs, and with this region having functioned as cell wall, NR matrix was confined in the 'cells.' These numerous nano-cells were thought to have behaved individually and collectively.
机译:我们制造了NR基质复合材料,其中多壁碳纳米管(MWCNT)均匀分散,以及它们的形态,机械性能和粘弹性。将MWCNT掺入NR基质增强了复合材料的拉伸强度和储存模量,但是当CNT的分散不均匀时,增强程度降低。即使留下未固化的,高达250,具有均匀分散体的MWCNT / NR复合材料也仍然是非流体,同时,同时没有由链易释放引起的热分解。与固化的MWCNT / NR复合材料相当的这些不寻常的热性质表明橡胶产品的回收潜力。假设这些现象是由复合材料的弹性体基质的“纤维素”引起的,也就是说,弹性体基质被围绕MWNT形成的界面区域分成小单元,并且具有作为所示的该区域细胞壁,NR基质被限制在“细胞”中。这些许多纳米细胞被认为是单独和集体的表现。

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