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首页> 外文期刊>Polymer Testing >Effect of butadiene/styrene ratio, block structure and carbon nanotube content on the mechanical and electrical properties of thermoplastic elastomers after UV ageing
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Effect of butadiene/styrene ratio, block structure and carbon nanotube content on the mechanical and electrical properties of thermoplastic elastomers after UV ageing

机译:丁二烯/苯乙烯比,嵌段结构和碳纳米管含量对紫外线老化后热塑性弹性体的机械和电性能的影响

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摘要

Thermoplastic elastomers based on a triblock copolymer styrene-butadiene-styrene (SBS) with different butadiene/styrene ratios, block structure and carbon nanotube (CNT) content were submitted to accelerated weathering in a Xenontest, in order to evaluate their stability to UV ageing. It was concluded that ageing mainly depends on butadiene/styrene ratio and block structure, with radial block structures exhibiting faster ageing than linear block structures. Moreover, the presence of carbon nanotubes in the SBS copolymer slows down the ageing of the copolymer. The evaluation of the influence of ageing on the mechanical and electrical properties demonstrates that the mechanical degradation is higher for the C401 sample, which is the SBS sample with the largest butadiene content and a radial block structure. On the other hand, a copolymer derivative from SBS, the styrene-ethylene/butadiene-styrene (SEBS) sample, retains a maximum deformation of similar to 1000% after 80 h of accelerated ageing. The hydrophobicity of the samples decreases with increasing ageing time, the effect being larger for the samples with higher butadiene content. It is also verified that cytotoxicity increases with increasing UV ageing, with the exception of SEBS, which remains non-cytotoxic up to 80 h of accelerated ageing time, demonstrating its potential for applications involving exposure to the environment. (C) 2015 Elsevier Ltd. All rights reserved.
机译:为了评估它们对紫外线老化的稳定性,在氙气测试中对基于具有不同丁二烯/苯乙烯比率,嵌段结构和碳纳米管(CNT)含量的三嵌段共聚物苯乙烯-丁二烯-苯乙烯(SBS)的热塑性弹性体进行了加速风化。结论是,老化主要取决于丁二烯/苯乙烯比和嵌段结构,径向嵌段结构比线性嵌段结构表现出更快的老化。此外,SBS共聚物中碳纳米管的存在减慢了共聚物的老化。老化对机械和电性能的影响的评估表明,C401样品的机械降解较高,C401样品是丁二烯含量最大且呈放射状嵌段结构的SBS样品。另一方面,来自SBS的共聚物衍生物,即苯乙烯-乙烯/丁二烯-苯乙烯(SEBS)样品,在加速老化80小时后,仍保留了接近1000%的最大变形。样品的疏水性随老化时间的增加而降低,对于丁二烯含量较高的样品,其影响更大。还证实了,随着SEBS的老化,细胞毒性会随着UV老化的增加而增加,而SEBS则在长达80 h的加速老化时间中仍保持无细胞毒性,这表明其在涉及环境的应用中具有潜力。 (C)2015 Elsevier Ltd.保留所有权利。

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