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A novel approach to investigate effect of magnetic field on dynamic properties of natural rubber based isotropic thick magnetorheological elastomers in shear mode

A novel approach to investigate effect of magnetic field on dynamic properties of natural rubber based isotropic thick magnetorheological elastomers in shear mode
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摘要 The preparation of natural rubber based isotropic thick magnetorheological elastomers(MRE) was focused on by varying the percentage volume concentration of carbonyl iron powder and developing a test set up to test the dynamic properties. Effect of magnetic field on the damping ratio was studied on the amplification region of the transmissibility curve. The viscoelastic dynamic damping nature of the elastomer was also studied by analyzing the force-displacement hysteresis graphs. The results show that MR effect increases with the increase in magnetic field as well as carbonyl iron powder particle concentration. It is observed that softer matrix material produces more MR effect. A maximum of 125% improvement in the loss factor is observed for the MRE with 25% carbonyl iron volume concentration. FEMM simulation shows that as carbonyl iron particle distribution becomes denser, MR effect is improved. FEMM analysis also reveals that if the distance between the adjacent iron particles are reduced from 20 μm to 10 μm, a 40% increase in stored energy is observed. The preparation of natural rubber based isotropic thick magnetorheological elastomers(MRE) was focused on by varying the percentage volume concentration of carbonyl iron powder and developing a test set up to test the dynamic properties. Effect of magnetic field on the damping ratio was studied on the amplification region of the transmissibility curve. The viscoelastic dynamic damping nature of the elastomer was also studied by analyzing the force-displacement hysteresis graphs. The results show that MR effect increases with the increase in magnetic field as well as carbonyl iron powder particle concentration. It is observed that softer matrix material produces more MR effect. A maximum of 125% improvement in the loss factor is observed for the MRE with 25% carbonyl iron volume concentration. FEMM simulation shows that as carbonyl iron particle distribution becomes denser, MR effect is improved. FEMM analysis also reveals that if the distance between the adjacent iron particles are reduced from 20 μm to 10 μm, a 40% increase in stored energy is observed.
出处 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2612-2619,共8页 中南大学学报(英文版)
关键词 magnetorheological elastomer natural rubber carbonyl iron powder(CIP) dynamic analysis 磁流变弹性体 磁场强度 各向同性 天然橡胶 动力特性 橡胶基 羰基铁粉 体积浓度
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参考文献15

  • 1CARLSON J D, JOLLY M R. MR fluid, foam and elastomer devices [J]. Meehatronics, 2000, 10: 555-569.
  • 2LI Wei-hua, ZHANG Xian-zhou. Recent patents on mechanical engineering [J]. 2008, 161-166.
  • 3KALLIO M. The elastic and damping properties of magnetorheological elastomers [J]. Tampere, Finland: Tampere University of Technology, 2015: 1-149.
  • 4SUN T L, GONG X L, JIANG W Q, LI J F, XU Z B, LI W H. Study on the damping properties of magnetorheological elastomers based on cis-polybutadiene rubber [J]. Polymer Testing, 2008, 27: 520-526.
  • 5YANG Jie, GONG Xing-long, DENG Hua-xia, QIN Li-jun, XUAN Shou-hu. Investigation on the mechanism of damping behavior of magnetorheological elastomers [J]. Smart Mater Struct, 2012, 21: 1-11.
  • 6FAN Yan-ceng, GONG Xing-long, XUAN Shou-hu, ZHANG Wei, ZHENG Jian, JIANG Wan-quan. Interracial friction damping properties in magnetorheological elastomers [J]. Smart Mater Struct, 2011, 20: 1-8.
  • 7TIAN T F, LI W H, ALICI G, DU H, DENG Y M. Microstructure and magnetorheology of graphite-based MR elastomers [J]. Rheol Acta,2011, 50: 825-836.
  • 8EEM Seung-hyun, JUNG Hyung-jo, KOO Jeong-hoi. Modeling of Magneto-Rheological Elastomers for Harmonic Shear Deformation [J]. IEEE Transactions on Magnetics, 2012, 48(11): 3080-3083.
  • 9GORDANINEJAD F, WANG Xiao-jie, MYSORE P. Behavior of thick magnetorheological elastomers [J]. Journal of Intelligent Material Systems and Structures, 2012, 23(9): 1033-1039.
  • 10POSSINGER T, BOLZMACHER C, BODELOT L, TRIANTAFYLLIDIS N~ [C]//SPIE Micro technologies conference, Grenoble, France: SPIC~ 2013: 1-13.

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