磁流变弹性体(Magnetorheological elastomer)是磁流变材料中新的一员,是由天然或人造橡胶和微米级的可磁化颗粒在外加磁场下固化而成.由于颗粒在橡胶中形成了近似链状结构,因此其流变特性(如刚度、阻尼)可由外加磁场来控制.综述了近年来国内外磁流变弹性体的研究情况,分析了其理论模型和一些力学性能测试方法,并展望了其应用前景.
参考文献
[1] | 李金,张华良.磁流变液研究和应用[J].上海大学学报(自然科学版),2004(01):21-25,29. |
[2] | 彭金松,萧蕴诗,苏永清,岳继光.磁流变液的流变特性及其应用前景[J].液压与气动,2003(08):27-29. |
[3] | 汪建晓,孟光.磁流变弹性体研究进展[J].功能材料,2006(05):706-709. |
[4] | Mark R Jolly;David Carlson J;Beth C Munnoz.A model of the behaviour of magnetorheological materials[J].Smart Mater Struet,1996(05):607. |
[5] | Shiga T.;Kurauchi T.;Okada A. .MAGNETROVISCOELASTIC BEHAVIOR OF COMPOSITE GELS[J].Journal of Applied Polymer Science,1995(4):787-792. |
[6] | Davis L C .Model of magnetorheological elastomers[J].Journal of Applied Physics,1999,85(06):3348. |
[7] | Bellan C.;Bossis G. .Field dependence of viscoelastic properties of MR elastomers[J].International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics,2002(17/18):2447-2453. |
[8] | 党辉 .加磁场制备和无磁场制备的磁流变弹性体的机理研究[D].中国科学技术大学,2005. |
[9] | 方生 .磁流变弹性体的磁场计算及力学性能的测试与分析[D].中国科学技术大学,2004. |
[10] | Shen Y;Golnarghi M F;Heppler G R .Experimental research and modeling of magnetorheologieal elastomers[J].Journal of Intelligent Material Systems and Structures,2004,15:27. |
[11] | 党辉,朱应顺,龚兴龙,张培强.基于分布链修正的磁流变弹性体的物理模型[J].化学物理学报,2005(06):971-975. |
[12] | 朱应顺,龚兴龙,张培强.柱状和层状结构磁流变弹性体剪切模量的数值计算[J].功能材料,2006(05):720-722,726. |
[13] | 龚兴龙,李剑锋,张先舟,张培强.磁流变弹性体力学性能测量系统的建立[J].功能材料,2006(05):733-735. |
[14] | 方生,龚兴龙,张先舟,张培强.磁流变弹性体力学性能的测试与分析[J].中国科学技术大学学报,2004(04):456-463. |
[15] | 王桦,周刚毅,方生,张培强.磁流变弹性体剪切性能的动态实验研究[J].实验力学,2004(01):1-5. |
[16] | Dorfmann A;Ogden R W .Magnetoelastic modelling of elastomers[J].Eur J Mechanics A/Solids,2003,22:497. |
[17] | Zhou G Y .Shear properties of a magnetorheological elastomar[J].Smart Mater and Structures,2003,12:139. |
[18] | Reji john;Suresh G;Natarajan V.Studies on magnetostrictive properties of a magnetorheological elastomer[A].Bangalore,India,2005:122. |
[19] | Zhou GY .Complex shear modulus of a magnetorheological elastomer[J].Smart Materials & Structures,2004(5):1203-1210. |
[20] | Zhou GY;Jiang ZY .Deformation in magnetorheological elastomer and elastomer-ferromagnet composite driven by a magnetic field[J].Smart Materials & Structures,2004(2):309-316. |
[21] | Jerzy Kaleta;Przemyslaw Kijak;Piotr Zajac.Damping identification of magnetorheological elastomers[A].Parma.Italy,2005 |
[22] | Ginder J M;Nichols M E;Elie L D .Controllable-stiffness components based on magnetorheological elastomers[J].Prooceedingsof SPIE,2000,3985:418. |
[23] | Ginder J M;Schlotter W F;Nichols M E .Magnetorbeological elastomers intunable vibration absorbers[J].Proceedings of Spie,2001,4331:103. |
[24] | Deng Huaxia;Gong Xinglong;Wang Lianhua .Development of an adaptive tuned vibration absorber with magnetorheological elastomer[J].Smart Materials and Structures,2006,15:111. |
[25] | 邓华夏;龚兴龙;张培强 等.刚度和阻尼均可控的减震器[P].CN 200520070319,2005-04-01. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%