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Reinforcing Behaviors of Sulfur-Containing Silane Coupling Agent in Natural Rubber-Based Magnetorheological Elastomers with Various Vulcanization Systems

机译:具有各种硫化系统的天然橡胶基磁流变弹性体中含含硫硅烷偶联剂的行为

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摘要

Magnetorheological elastomers (MRE) is known as an intelligent material constituted of a rubber matrix as well as soft magnetic particles. Silane coupling agents are used to raise the interplay between the inorganic particles and rubber matrix. Silane coupling agent, bis-[-3-(trimethylsilyl propyl)tetra sulfide] (Si69), was picked for comparison of its reinforcing efficiency in the MRE with various vulcanization systems: a conventional (CV), semi-efficient (semi-EV), and efficient (EV) vulcanization system. The outcome illustrated that not only was there improved Si69 surface hydrophobicity of the magnetic particles, but also enhanced Si69 in the interplay between the rubber matrix and magnetic particles. On one hand, the saturated induced magnetic modulus and zero magnetic field modulus of MRE was increased in the vulcanization system, and the loss factor was reduced after the magnetic particles were modified by Si69. On the other hand, the effect of Si69 on the MRE depended on the vulcanization system. The Si69 provided better enhancements in the EV system due to effects of the sulfur contribution of Si69.
机译:磁流变弹性体(MRE)被称为由橡胶基质构成的智能材料以及软磁颗粒。硅烷偶联剂用于提高无机颗粒和橡胶基质之间的相互作用。挑选硅烷偶联剂,双 - [ - 3-(三甲基甲硅烷基丙基)四硫化物](Si69),以比较其具有各种硫化系统的MRE中的增强效率:常规(CV),半效率(半EV )和高效(EV)硫化系统。所示结果,不仅存在磁性颗粒的改善的Si69表面疏水性,而且还具有橡胶基质和磁性颗粒之间的相互作用的增强的Si69。一方面,在硫化系统中增加了饱和诱导的磁模和零磁场模量,并且在通过Si69改变磁性颗粒后,损耗因子降低。另一方面,Si69对MRE的影响依赖于硫化系统。由于Si69的硫贡献的影响,SI69在EV系统中提供了更好的增强。

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