Lovšin Matija, Brandl Dominik, Glavan Gašper, Belyaeva Inna A, Cmok Luka, Čoga Lucija, Kalin Mitjan, Shamonin Mikhail, Drevenšek-Olenik Irena
Department of Complex Matter, J. Stefan Institute, Jamova 39, 1000 Ljubljana, Slovenia.
East Bavarian Centre for Intelligent Materials (EBACIM), Ostbayerische Technische Hochschule (OTH) Regensburg, Seybothstr. 2, 93053 Regensburg, Germany.
Polymers (Basel). 2021 Dec 16;13(24):4422. doi: 10.3390/polym13244422.
A surface relief grating with a period of 30 µm is embossed onto the surface of magnetoactive elastomer (MAE) samples in the presence of a moderate magnetic field of about 180 mT. The grating, which is represented as a set of parallel stripes with two different amplitude reflectivity coefficients, is detected via diffraction of a laser beam in the reflection configuration. Due to the magnetic-field-induced plasticity effect, the grating persists on the MAE surface for at least 90 h if the magnetic field remains present. When the magnetic field is removed, the diffraction efficiency vanishes in a few minutes. The described effect is much more pronounced in MAE samples with larger content of iron filler (80 wt%) than in the samples with lower content of iron filler (70 wt%). A simple theoretical model is proposed to describe the observed dependence of the diffraction efficiency on the applied magnetic field. Possible applications of MAEs as magnetically reconfigurable diffractive optical elements are discussed. It is proposed that the described experimental method can be used as a convenient tool for investigations of the dynamics of magnetically induced plasticity of MAEs on the micrometer scale.
在约180 mT的中等磁场存在下,将周期为30 µm的表面浮雕光栅压印到磁活性弹性体(MAE)样品表面。该光栅由一组具有两种不同幅度反射率系数的平行条纹表示,通过反射配置下激光束的衍射进行检测。由于磁场诱导的塑性效应,如果磁场仍然存在,光栅会在MAE表面持续至少90小时。当去除磁场时,衍射效率在几分钟内消失。与铁填料含量较低(70 wt%)的样品相比,在铁填料含量较高(80 wt%)的MAE样品中,上述效应更为明显。提出了一个简单的理论模型来描述观察到的衍射效率与外加磁场的依赖关系。讨论了MAE作为磁可重构衍射光学元件的可能应用。提出所描述的实验方法可作为研究微米尺度下MAE磁致塑性动力学的便捷工具。