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Interfacial adhesion between the iron fillers and the silicone matrix in magneto-rheological elastomers at high deformations

机译:高变形下磁流变弹性体中铁填料和硅树脂基质之间的界面粘附

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This work investigates the interfacial adhesion between the iron fillers and the silicone matrix in magneto-rheological elastomers at high deformations. Carbonyl iron powder, composed of mechanically soft spherical particles with a median size of 3.5 urn and a volume concentration of 3.5%, was mixed in a soft silicone matrix (Shore 00-20); the compound was then degassed and cured under temperature. The presence of a homogeneous magnetic field of 0.3 T during the curing process allowed the formation of particle chains. Tensile tests of these samples under scanning electron microscope showed interfacial slipping and debonding between the two phases. To improve interfacial adhesion, a silane primer was applied to the iron particles, following two different procedures, before the mixing and crosslinking process, thus giving two additional types of samples. In tensile testing lengthwise to the particle alignment, with engineering strains up to 150%, the structural responses of the different types of samples were compared. An enhanced adhesion of the iron fillers to the silicone matrix resulting in a reinforced matrix and increased tensile strength during the first loading path could be observed. Furthermore, scanning electron microscope images show that a more elaborated particle-matrix interface was obtained with the primer additive.
机译:这项工作研究了在高变形下磁流变弹性体中铁填料和有机硅基体之间的界面粘附性。将由机械柔软的球形颗粒组成的羰基铁粉(中值尺寸为3.5 um,体积浓度为3.5%)混合在柔软的有机硅基质中(肖尔00-20);然后将化合物脱气并在温度下固化。在固化过程中存在0.3 T的均匀磁场,可以形成颗粒链。在扫描电子显微镜下对这些样品的拉伸测试显示出两相之间的界面滑动和脱粘。为了提高界面附着力,在混合和交联过程之前,按照两种不同的步骤将硅烷底漆应用于铁颗粒,从而得到两种其他类型的样品。在纵向对颗粒排列进行拉伸测试时,对高达150%的工程应变,比较了不同类型样品的结构响应。可以观察到铁填料与硅氧烷基质的粘合性增强,从而导致基质增强,并且在第一加载路径期间抗张强度提高。此外,扫描电子显微镜图像显示,使用底漆添加剂可获得更精细的颗粒-基质界面。

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