Front Matter
Magnetorheology: Advances and Applications, 2013, P001-P004
DOI:10.1039/9781849737548-FP001
Preface
Magnetorheology: Advances and Applications, 2013, P005-P006
DOI:10.1039/9781849737548-FP005
Contents
Magnetorheology: Advances and Applications, 2013, P007-P013
DOI:10.1039/9781849737548-FP007
CHAPTER 1Importance of Interparticle Friction and Rotational Diffusion to Explain Recent Experimental Results in the Rheology of Magnetic Suspensions
G. Bossis, P. Kuzhir, M. T. López-López, A. Meunier and C. Magnet
Magnetorheology: Advances and Applications, 2013, 1-30
DOI:10.1039/9781849737548-00001
CHAPTER 2Magnetorheology of Fe Nanofibers Dispersed in a Carrier Fluid
R. C. Bell, D. T. Zimmerman and N. M. Wereley
Magnetorheology: Advances and Applications, 2013, 31-55
DOI:10.1039/9781849737548-00031
CHAPTER 3Magnetoelasticity
M. Zrinyi
Magnetorheology: Advances and Applications, 2013, 56-73
DOI:10.1039/9781849737548-00056
CHAPTER 4MR Fluids at the Extremes: High-Energy and Low-Temperature Performance of LORD® MR Fluids and Devices
Daniel E. Barber
Magnetorheology: Advances and Applications, 2013, 74-95
DOI:10.1039/9781849737548-00074
CHAPTER 5Surface Effect on Flow of Magnetorheological Fluids: Featuring Modified Mason Number
Barkan Kavlicoglu, Faramarz Gordaninejad and Xiaojie Wang
Magnetorheology: Advances and Applications, 2013, 96-141
DOI:10.1039/9781849737548-00096
CHAPTER 6Thin-film Rheology and Tribology of Magnetorheological Fluids
Juan de Vicente and Antonio J. F. Bombard
Magnetorheology: Advances and Applications, 2013, 142-155
DOI:10.1039/9781849737548-00142
CHAPTER 7Coated Magnetorheological Composite Particles: Fabrication and Rheology
Ying Dan Liu and Hyoung Jin Choi
Magnetorheology: Advances and Applications, 2013, 156-178
DOI:10.1039/9781849737548-00156
CHAPTER 8Microstructures and Physics of Super-Strong Magnetorheological Fluids
R. Tao
Magnetorheology: Advances and Applications, 2013, 179-205
DOI:10.1039/9781849737548-00179
CHAPTER 9Magnetorheological Fluids Flowing Through Porous Media: Analysis, Experimental Evaluation, and Applications
Norman M. Wereley, Wei Hu and Ryan Robinson
Magnetorheology: Advances and Applications, 2013, 206-228
DOI:10.1039/9781849737548-00206
CHAPTER 10MR Devices with Advanced Magnetic Circuits
Holger Böse, Johannes Ehrlich and Thomas Gerlach
Magnetorheology: Advances and Applications, 2013, 229-260
DOI:10.1039/9781849737548-00229
CHAPTER 11Magnetorheological Fluid-Based High Precision Finishing Technology
W. I. Kordonski
Magnetorheology: Advances and Applications, 2013, 261-277
DOI:10.1039/9781849737548-00261
CHAPTER 12Adaptive Magnetorheological Energy Absorbing Mounts for Shock Mitigation
Norman M. Wereley, Harinder J. Singh and Young-Tai Choi
Magnetorheology: Advances and Applications, 2013, 278-287
DOI:10.1039/9781849737548-00278
CHAPTER 13Semi-Active Isolation System Using Self-Powered Magnetorheological Dampers
Young-Tai Choi, Hyun Jeong Song, Wei Hu and Norman M. Wereley
Magnetorheology: Advances and Applications, 2013, 288-306
DOI:10.1039/9781849737548-00288
CHAPTER 14Controllable Magnetorheological Damping in Advanced Helicopter Rotors
Grum T. Ngatu, Wei Hu, Norman M. Wereley, Curt S. Kothera and Gang Wang
Magnetorheology: Advances and Applications, 2013, 307-341
DOI:10.1039/9781849737548-00307
CHAPTER 15Magnetorheological Devices with Multiple Functions
Wei-Hsin Liao, Chao Chen and Hongtao Guo
Magnetorheology: Advances and Applications, 2013, 342-362
DOI:10.1039/9781849737548-00342
CHAPTER 16A Novel Medical Haptic Device Using Magneto-rheological Fluid
Seung-Bok Choi, Phuong-Bac Nguyen and Jong-Seok Oh
Magnetorheology: Advances and Applications, 2013, 363-381
DOI:10.1039/9781849737548-00363
Subject Index
Magnetorheology: Advances and Applications, 2013, 382-396
DOI:10.1039/9781849737548-00382