Bica Ioan, Iacobescu Gabriela-Eugenia, Chirigiu Larisa-Marina-Elisabeth
Advanced Environmental Research Institute, West University of Timisoara, Bulevardul Vasile Pârvan 4, Nr. 4, 300223 Timisoara, Romania.
Department of Physics, University of Craiova, Strada Alexandru Ioan Cuza, Nr. 13, 200585 Craiova, Romania.
Nanomaterials (Basel). 2022 Sep 18;12(18):3231. doi: 10.3390/nano12183231.
In this paper, we present the procedure for fabricating a new magneto-tactile sensor (MTS) based on a low-cost commercial polyurethane sponge, including the experimental test configuration, the experimental process, and a description of the mechanisms that lead to obtaining the MTS and its characteristics. It is shown that by using a polyurethane sponge, microparticles of carbonyl iron, ethanol, and copper foil with electroconductive adhesive, we can obtain a high-performance and low-cost MTS. With the experimental assembly described in this paper, the variation in time of the electrical capacity of the MTS was measured in the presence of a deforming force field, a magnetic field, and a magnetic field superimposed over a deformation field. It is shown that, by using an external magnetic field, the sensitivity of the MTS can be increased. Using the magnetic dipole model and linear elasticity approximation, the qualitative mechanisms leading to the reported results are described in detail.
在本文中,我们展示了基于低成本商用聚氨酯海绵制造新型磁触觉传感器(MTS)的过程,包括实验测试配置、实验过程,以及对获得MTS及其特性的机制的描述。结果表明,通过使用聚氨酯海绵、羰基铁微粒、乙醇和带有导电粘合剂的铜箔,我们可以获得高性能且低成本的MTS。利用本文所述的实验装置,在存在变形力场、磁场以及叠加在变形场上的磁场的情况下,测量了MTS电容随时间的变化。结果表明,通过施加外部磁场,可以提高MTS的灵敏度。利用磁偶极子模型和线性弹性近似,详细描述了导致所报道结果的定性机制。