Effect of Material Composition on Tunable Surface Roughness of Magnetoactive Elastomers

被引:21
作者
Glavan, Gasper [1 ]
Kettl, Wolfgang [1 ]
Brunhuber, Alexander [1 ]
Shamonin, Mikhail [1 ]
Drevensek-Olenik, Irena [2 ,3 ]
机构
[1] Ostbayer Tech Hsch OTH Regensburg, East Bavarian Ctr Intelligent Mat EBACIM, Seybothstr 2, D-93053 Regensburg, Germany
[2] Univ Ljubljana, Fac Math & Phys, Jadranska 19, SI-1000 Ljubljana, Slovenia
[3] J Stefan Inst, Jamova 39, SI-1000 Ljubljana, Slovenia
关键词
magnetorheological polymers; surface properties; magnetically tunable surface roughness; magnetically tunable surface reflectivity; MAGNETORHEOLOGICAL ELASTOMER;
D O I
10.3390/polym11040594
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
We investigated magnetic-field-induced modifications of the surface roughness of magnetoactive elastomers (MAEs) with four material compositions incorporating two concentrations of ferromagnetic microparticles (70 wt% and 80 wt%) and exhibiting two shear storage moduli of the resulting composite material (about 10 kPa and 30 kPa). The analysis was primarily based on spread optical reflection measurements. The surfaces of all four materials were found to be very smooth in the absence of magnetic field (RMS roughness below 50 nm). A maximal field-induced roughness modification (approximately 1 m/T) was observed for the softer material with the lower filler concentration, and a minimal modification (less than 50 nm/T) was observed for the harder material with the higher filler concentration. All four materials showed a significant decrease in the total optical reflectivity with an increasing magnetic field as well. This effect is attributed to the existence of a distinct surface layer that is depleted of microparticles in the absence of a magnetic field but becomes filled with particles in the presence of the field. We analyzed the temporal response of the reflective properties to the switching on and off of the magnetic field and found switching-on response times of around 0.1 s and switching-off response times in the range of 0.3-0.6 s. These observations provide new insight into the magnetic-field-induced surface restructuring of MAEs and may be useful for the development of magnetically reconfigurable elastomeric optical surfaces.
引用
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页数:13
相关论文
共 52 条
[1]   Novel highly elastic magnetic materials for dampers and seals:: Part I.: Preparation and characterization of the elastic materials [J].
Abramchuk, S. ;
Kramarenko, E. ;
Stepanov, G. ;
Nikitin, L. V. ;
Filipcsei, G. ;
Khokhlov, A. R. ;
Zrinyi, M. .
POLYMERS FOR ADVANCED TECHNOLOGIES, 2007, 18 (11) :883-890
[2]  
[Anonymous], 2016, SMART MATER STRUCT, DOI DOI 10.1088/0964-1726/26/1/015004
[3]  
[Anonymous], ANN T NORD RHEOL SOC
[4]   Modeling of magneto-mechanical response of magnetorheological elastomers (MRE) and MRE-based systems: a review [J].
Asun Cantera, M. ;
Behrooz, Majid ;
Gibson, Ronald F. ;
Gordaninejad, Faramarz .
SMART MATERIALS AND STRUCTURES, 2017, 26 (02)
[5]   Magneto-piezoresistance in Magnetorheological elastomers for magnetic induction gradient or position sensors [J].
Ausanio, Giovanni ;
Iannotti, Vincenzo ;
Ricciardi, Enrico ;
Lanotte, Luca ;
Lanotte, Luciano .
SENSORS AND ACTUATORS A-PHYSICAL, 2014, 205 :235-239
[6]   Magnetodielectric effect in magnetoactive elastomers: Transient response and hysteresis [J].
Belyaeva, Inna A. ;
Kramarenko, Elena Yu. ;
Shamonin, Mikhail .
POLYMER, 2017, 127 :119-128
[7]   Magnetic field intensity effect on plane electric capacitor characteristics and viscoelasticity of magnetorheological elastomer [J].
Bica, Ioan ;
Liu, Ying Dan ;
Choi, Hyoung Jin .
COLLOID AND POLYMER SCIENCE, 2012, 290 (12) :1115-1122
[8]   Influence of the transverse magnetic field intensity upon the electric resistance of the magnetorheological elastomer containing graphite microparticles [J].
Bica, Ioan .
MATERIALS LETTERS, 2009, 63 (26) :2230-2232
[9]   Non-ergodic tube structures in magnetic gels and suspensions [J].
Borin, Dmitry ;
Odenbach, Stefan ;
Iskakova, Larisa ;
Zubarev, Andrey .
SOFT MATTER, 2018, 14 (42) :8537-8544
[10]   Melt and glass crystallization of PDMS and PDMS silica nanocomposites [J].
Bosq, Nicolas ;
Guigo, Nathanael ;
Persello, Jacques ;
Sbirrazzuoli, Nicolas .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2014, 16 (17) :7830-7840