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Preparation and characterization of vulcanized silicone rubber/halloysite nanotube nanocomposites: Effect of matrix hardness and HNT content

机译:硫化硅橡胶/硅藻土纳米管纳米复合材料的制备与表征:基体硬度和HNT含量的影响

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Halloysite nanotube (HNT) was successfully surface-treated. The grafted HNT was evaluated by TEM, FTIR and TGA. Modified HNT was used to prepare silicone rubber/HNT vulcanizate nanocomposites. The effects of silicone rubber hardness and HNT loading on the cure characteristics, swelling behavior, dynamic mechanical, thermal and mechanical properties of the resulting rubber compounds were systematically studied by rheometry, DMTA, TGA and tensile testing, respectively. The obtained results were correlated with the microstructure of the samples as investigated by XRD and SEM analyses. Vulcanization curves revealed that the HNT had a positive effect on the cure kinetics of the rubber compounds via steady decrease in scorch time and optimum cure time along with a gradual increase in effective torque with HNT content. The incorporation of HNT into the silicone rubbers enhanced the crosslink density of the nanocomposites. DMTA results showed restricted relaxation processes in HNT-reinforced systems compared with the unfilled silicone rubbers, with more pronounced effect for system with silicone rubber matrix of lowest hardness. The tensile data demonstrated a rise in Young's modulus and tensile strength of the filled rubbers with HNT content. The thermal stability of the rubber compounds gradually improved with HNT loading in the material according to TGA results. (C) 2016 Elsevier Ltd. All rights reserved.
机译:埃洛石纳米管(HNT)已成功进行了表面处理。通过TEM,FTIR和TGA评估了接枝的HNT。改性的HNT用于制备硅橡胶/ HNT硫化橡胶纳米复合材料。分别通过流变法,DMTA,TGA和拉伸试验系统地研究了硅橡胶硬度和HNT含量对所得胶料的硫化特性,溶胀行为,动态力学,热学和机械性能的影响。通过XRD和SEM分析,获得的结果与样品的微观结构相关。硫化曲线表明,HNT对硫化胶的硫化动力学具有积极影响,其硫化时间,最佳硫化时间的稳定减少以及随着HNT含量的有效扭矩的逐渐增加。 HNT掺入硅橡胶中可增强纳米复合材料的交联密度。 DMTA结果表明,与未填充的硅橡胶相比,HNT增强系统的松弛过程受到限制,对于硬度最低的硅橡胶基体的系统,效果更为明显。拉伸数据表明,随着HNT含量的增加,填充橡胶的杨氏模量和拉伸强度都有所提高。根据TGA结果,随着材料中HNT含量的增加,橡胶混合物的热稳定性逐渐提高。 (C)2016 Elsevier Ltd.保留所有权利。

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