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Damping Analysis of Some Inorganic Particles on Poly(butyl-methacrylate)

机译:聚甲基丙烯酸丁酯上一些无机颗粒的阻尼分析

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摘要

Viscoelastic polymers can be used as damping materials to control unexpected vibration and noise through energy dissipation. To investigate the effect of an inorganic filler on damping property, a series of inorganic particles, Ferriferous oxide(Fe3O4), Graphene/Fe3O4(GF), and Fe3O4 of demagnetization(α-Fe2O3) were incorporated into poly(butyl-methacrylate) (PBMA). The effects of the dispersion of particles, as well as the interaction between particles and the PBMA matrix on the damping property of composites, were systematically studied. Results revealed that the addition of three types of particles can effectively improve the damping properties and broaden the effective damping temperature range. Dispersion of α-Fe2O3 in the PBMA matrix is better than that of Fe3O4. As a result, the damping peak can be increased more. The interaction between GF and the PBMA matrix is stronger than that between Fe3O4 and the PBMA. The damping peak of the composites can be suppressed by GF, which is opposite to Fe3O4 and α-Fe2O3. In addition, glass transition temperature (Tg) of all composites in the study shifted to low temperatures.
机译:粘弹性聚合物可用作阻尼材料,以通过能量耗散来控制意外的振动和噪声。为了研究无机填料对阻尼性能的影响,将一系列无机颗粒,亚铁氧化物(Fe3O4),石墨烯/ Fe3O4(GF)和退磁的Fe3O4(α-Fe2O3)掺入了聚(甲基丙烯酸丁酯)( PBMA)。系统地研究了颗粒的分散以及颗粒与PBMA基体之间的相互作用对复合材料阻尼性能的影响。结果表明,添加三种类型的颗粒可以有效地改善阻尼性能并扩大有效阻尼温度范围。 PBMA基体中α-Fe2O3的分散性优于Fe3O4。结果,可以进一步增加阻尼峰值。 GF与PBMA基质之间的相互作用比Fe3O4与PBMA之间的相互作用强。 GF可以抑制复合材料的阻尼峰,这与Fe3O4和α-Fe 2 O 3 相反。另外,研究中所有复合材料的玻璃化转变温度(T )都转变为低温。

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