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Study of crosslink structure and dynamic mechanical properties of magnetorheological elastomer: Effect of vulcanization system

机译:磁流变弹性体交联结构及动态力学性能研究:硫化系统的影响

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摘要

Magnetorheological elastomers are a kind of intelligent and smart materials which are mainly composed of rubbery polymers and soft magnetic particles. The role of various vulcanization systems on the crosslink structures, curing properties, and dynamic mechanical properties of natural rubber-based magnetorheological elastomer was investigated. Conventional, semi-efficient, and efficient vulcanization systems were used and compared. It was found that the content of polysulfide linkages decreased and the monosulfide linkages increased when the vulcanization system was changed from conventional to semi-efficient and efficient vulcanization systems, respectively. The crosslink density has the same tendency with the content of polysulfide linkages. In all vulcanization systems, the zero-field modulus, magnetic-induced modulus, controllability of damping, and the degree of the influence of Payne effect of the samples had an increasing trend when the crosslink density decreased. Evidence from micrographs of scanning electron microscope showed that this was because the particle chains in the low crosslink density composites were longer and more aligned. As the proportion of monosulfide linkages increased, the value of the loss factor increased and the modulus of the composites was more affected by the increasing frequency.
机译:磁流变弹性体是一种主要由橡胶状聚合物和软磁颗粒组成的智能和智能材料。研究了各种硫化系统对自然橡胶基磁流变物体弹性体的交联结构,固化性能和动态力学性能的作用。使用常规,半效率和有效的硫化系统并进行比较。发现多硫化物键的含量降低,当硫化体系分别从常规到半效率和有效的硫化系统改变时,单硫化物键增加。交联密度具有与多硫化物键的含量相同的趋势。在所有硫化系统中,零场模量,磁诱导的模量,阻尼的可控性以及样品的Payne效应的影响程度在交联密度降低时具有越来越大的趋势。来自扫描电子显微镜的显微照片的证据表明,这是因为低交联密度复合材料中的颗粒链较长,更高。随着单硫化物键的比例增加,损耗因子的值增加,复合材料的模量受到频率的增加。

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