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High performance waste-derived filler/carbon black reinforced guayule natural rubber composites

机译:高性能废料填料/炭黑增强的愈创木胶天然橡胶复合材料

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Guayule rubber (GNR) is an alternative source of natural rubber that does not crossreact with Type I latex allergy because it does not contain any proteins which can be recognized by antibodies raised against Hevea brasiliensis allergens. To advance the commercialization of this elastomer and diversify sources of natural rubber, efficient reinforcement of GNR is required to match the physical properties of vulcanized materials made from H. brasiliensise natural rubber in specific products. Superior or comparable reinforcement to that of carbon black N330, was achieved by partial replacement of carbon black with 5 and 10 phr of waste-derived material. Out of several waste-derived fillers tested, micro sized eggshells showed remarkable reinforcing potential for GNR. Hybrid carbon black/micro sized eggshells/GNR composites (up to 20 phr micro sized eggshells), had increased tensile strength, and elongation at break, while maintaining similar values of 300% modulus and hardness to those achieved by carbon black/GNR composites. Hierarchical cluster analysis partitioned the data into six groups of composites having statistically similar properties within each group. Composites containing 5-20 phr of micro sized eggshells were clustered in a separate group due to their unique combination of high tensile strength and flexibility. The superior reinforcement may reflect a combined synergistic reinforcing effect of carbon black particles, which possess a strong polymer-filler interaction, with the formation of a unique network between the GNR and the waste-derived materials, not attained with H. brasiliensis natural rubber. (C) 2016 Elsevier B.V. All rights reserved.
机译:Guayule橡胶(GNR)是天然橡胶的替代来源,不会与I型乳胶过敏发生交叉反应,因为它不包含任何抗巴西橡胶树变应原的抗体可以识别的蛋白质。为了促进这种弹性体的商业化并丰富天然橡胶的来源,需要有效地增强GNR来匹配特定产品中由巴西布鲁氏菌天然橡胶制成的硫化材料的物理性能。通过用5和10 phr的废料替代部分碳黑,可以达到比N330更好或相当的增强。在测试的几种源自废物的填料中,微型蛋壳对GNR具有显着的增强潜力。混合炭黑/微米级蛋壳/ GNR复合材料(最大20 phr微米级蛋壳)具有提高的拉伸强度和断裂伸长率,同时保持了与炭黑/ GNR复合材料相似的300%模量和硬度值。层次聚类分析将数据划分为六组复合材料,每组复合材料在统计上具有相似的特性。包含5-20 phr微小蛋壳的复合材料由于其高拉伸强度和柔韧性的独特组合而聚集在一个单独的组中。优异的增强效果可能反映了炭黑颗粒的综合协同增强效果,该炭黑颗粒具有很强的聚合物-填料相互作用,并且在GNR和源自废橡胶的天然橡胶之间无法形成独特的网络。 (C)2016 Elsevier B.V.保留所有权利。

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