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首页> 外文期刊>Pure and Applied Chemistry >Preparation and intermolecular interaction of bio-based elastomer/hindered phenol hybrid with tunable damping properties
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Preparation and intermolecular interaction of bio-based elastomer/hindered phenol hybrid with tunable damping properties

机译:具有可调阻尼特性的生物基弹性体/受阻酚杂化物的制备及分子间相互作用

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摘要

In this research, crosslinked hybrids of a newly invented bio-based elastomer poly(di--isoamyl itaconate-co-isoprene) (PDII) and 3,9-bis[1,1-dimethyl-2{beta-(3-tert-butyl-4-hydroxy-5-methylphenyl)propionyloxy}ethyl]-2,4,8,10-tetraoxaspiro[5,5]-undecane (AO-80) were designed and prepared by the mechanical kneading of the PDII/AO-80 hybrids at a temperature higher than the melting point of AO-80, followed by the crosslinking of PDII during the subsequent hot-pressing/vulcanization process. The microstructure, morphology, and mechanical properties of the hybrids were systematically investigated in each preparation stage by using DSC, FTIR, XRD, SEM, DMTA, and tensile testing. Part of the AO-80 molecules formed an AO-80-rich phase, but most of them dissolved in the PDII to form a very fine dispersion in amorphous form. The results of FTIR and DSC indicated that strong intermolecular interactions were formed between the PDII and the AO-80 molecules. Each PDII/AO-80 crosslinked hybrid showed a single transition with a higher glass transition temperature and significantly higher loss value (tan delta) than the neat PDII because of intermolecular interactions between the PDII and the AO-80 molecules. For instance, tan delta of PDII/AO-80 consisting of 100 phr AO-80 achieved 2.6 times as neat PDII. The PDII/AO-80 crosslinked hybrids with applicability at room temperature are potential bio-based damping materials for the future.
机译:在这项研究中,新发明的生物基弹性体聚(衣康酸二异戊酯-异戊二烯)(PDII)和3,9-双[1,1-二甲基-2 {β-(3-tert)通过PDII / AO的机械捏合设计并制备了-丁基-4-羟基-5-甲基苯基)丙酰氧基}乙基] -2,4,8,10-四氧杂螺[5,5]-十一烷(AO-80) -80杂化物在高于AO-80熔点的温度下进行,随后在随后的热压/硫化过程中进行PDII的交联。通过使用DSC,FTIR,XRD,SEM,DMTA和拉伸测试,在每个制备阶段系统地研究了杂种的微观结构,形态和力学性能。一部分AO-80分子形成了富含AO-80的相,但大多数溶解在PDII中以非晶态形式形成了非常精细的分散体。 FTIR和DSC的结果表明,PDII和AO-80分子之间形成了强烈的分子间相互作用。由于PDII和AO-80分子之间的分子间相互作用,每个PDII / AO-80交联的杂化物均显示出比纯PDII更高的玻璃化转变温度和明显更高的损耗值(tanδ)的单一转变。例如,由100phr AO-80组成的PDII / AO-80的正切增量是纯PDII的2.6倍。具有室温适用性的PDII / AO-80交联杂化材料是未来潜在的生物基阻尼材料。

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