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Results 1 to 25 of 911

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Relation between size and phase structure of gallium : Differential scanning calorimeter experimentsHAO HE; GUANG TAO FEI; PING CUI et al.Physical review B. Condensed matter and materials physics. 2005, Vol 72, Num 7, pp 073310.1-073310.4, issn 1098-0121Article

Surface rheology of two-dimensional percolating networks : Langmuir films of polymer pancakesMONROY, Francisco; ORTEGA, Francisco; RUBIO, Ramon G et al.Physical review letters. 2005, Vol 95, Num 5, pp 056103.1-056103.4, issn 0031-9007Article

A high performance magnetorheological valve with a meandering flow pathIMADUDDIN, Fitrian; SAIFUL AMRI MAZLAN; MOHD AZIZI ABDUL RAHMAN et al.Smart materials and structures. 2014, Vol 23, Num 6, issn 0964-1726, 065017.1-065017.11Article

A new energy-harvesting device system for wireless sensors, adaptable to on-site monitoring of MR damper motionMIAO YU; YOUXIANG PENG; SIQI WANG et al.Smart materials and structures. 2014, Vol 23, Num 7, issn 0964-1726, 077002.1-077002.7Article

Design of a 4-DOF MR haptic master for application to robot surgery: virtual environment workOH, Jong-Seok; CHOI, Seung-Hyun; CHOI, Seung-Bok et al.Smart materials and structures. 2014, Vol 23, Num 9, issn 0964-1726, 095032.1-095032.12Article

Energy-harvesting linear MR damper: prototyping and testingSAPINSKI, Bogdan.Smart materials and structures. 2014, Vol 23, Num 3, issn 0964-1726, 035021.1-035021.15Article

Rheological Properties of Bed Sediments Subjected to Shear and Vibration LoadsWENYU YANG; SOON KEAT TAN; HUAKUN WANG et al.Journal of waterway, port, coastal, and ocean engineering. 2014, Vol 140, Num 1, pp 109-113, issn 0733-950X, 5 p.Article

Thermogelling magnetorheological fluidsSHAHRIVAR, Keshvad; DE VICENTE, Juan.Smart materials and structures. 2014, Vol 23, Num 2, issn 0964-1726, 025012.1-025012.9Article

Tribological characteristics of magneto-rheological fluid for movement sensor applicationWANLI SONG; SEONG, Min-Sang; CHOI, Seung-Bok et al.Smart materials and structures. 2014, Vol 23, Num 1, issn 0964-1726, 017001.1-017001.4Article

A semi-active magnetorheological fluid mechanism with variable stiffness and dampingGREINER-PETTER, Christoph; ADITYA SURYADI TAN; SATTEL, Thomas et al.Smart materials and structures. 2014, Vol 23, Num 11, issn 0964-1726, 115008.1-115008.10Article

Design of a new engine mount for vertical and horizontal vibration control using magnetorheological fluidPHU, D. X; CHOI, S. B; LEE, Y. S et al.Smart materials and structures. 2014, Vol 23, Num 11, issn 0964-1726, 117001.1-117001.12Article

Squeeze behaviors of magnetic powders between two parallel platesKAIKAI CHEN; YU TIAN; LEI SHAN et al.Smart materials and structures. 2014, Vol 23, Num 11, issn 0964-1726, 117004.1-117004.7Article

Blood flow in small tubes: quantifying the transition to the non-continuum regimeHUAN LEI; FEDOSOV, Dmitry A; CASWELL, Bruce et al.Journal of Fluid Mechanics. 2013, Vol 722, pp 214-239, issn 0022-1120, 26 p.Article

Design, testing and analysis of a novel composite magnetorheological fluid clutchSHANGQIU DAI; CHENGBIN DU; GUOJUN YU et al.Journal of intelligent material systems and structures. 2013, Vol 24, Num 14, pp 1675-1682, issn 1045-389X, 8 p.Article

Development of a multi-pole magnetorheological brakeSHIAO, Yaojung; NGUYEN, Quang-Anh.Smart materials and structures. 2013, Vol 22, Num 6, issn 0964-1726, 065008.1-065008.13Article

Electrorheology of aniline oligomersMRLIK, Miroslav; SEDLACIK, Michal; PAVLINEK, Vladimir et al.Colloid and polymer science (Print). 2013, Vol 291, Num 9, pp 2079-2086, issn 0303-402X, 8 p.Article

Experimental study on heat transfer of the magnetorheological fluidsYILDIRIM, Gokhan; GENC, Seval.Smart materials and structures. 2013, Vol 22, Num 8, issn 0964-1726, 085001.1-085001.8Article

Importance of the rheological properties of resorcinol― formaldehyde sols in the preparation of Cu-doped organic and carbon xerogel microspheresZAPATA-BENABITHE, Zulamita; DE VICENTE, Juan; CARRASCO-MARIN, Francisco et al.Carbon (New York, NY). 2013, Vol 53, pp 402-405, issn 0008-6223, 4 p.Article

The research of the conductive mechanism and properties of magnetorheological fluidsXI CHEN; XIAOQIANG ZHU; ZEYU XU et al.Physica. B, Condensed matter. 2013, Vol 418, pp 32-35, issn 0921-4526, 4 p.Article

Transient effect modelling of magnetorheological fluid―based damper at low speed and its comparison with the existing magnetorheological damper modelsRAJEEV MOHAN BHATNAGAR.Journal of intelligent material systems and structures. 2013, Vol 24, Num 12, pp 1506-1523, issn 1045-389X, 18 p.Article

Vibration isolation using nonlinear damping implemented by a feedback-controlled MR damperHO, C; LANG, Z. Q; SAPINSKI, B et al.Smart materials and structures. 2013, Vol 22, Num 10, issn 0964-1726, 105010.1-105010.11Article

A new magnetorheological damper for seismic controlYANG DING; LU ZHANG; ZHU, Hai-Tao et al.Smart materials and structures. 2013, Vol 22, Num 11, issn 0964-1726, 115003.1-115003.12Article

A phenomenological dynamic model of a magnetorheological damper using a neuro-fuzzy systemZEINALI, Mohammadjavad; SAIFUL AMRI MAZLAN; ABDUL YASSER ABD FATAH et al.Smart materials and structures. 2013, Vol 22, Num 12, issn 0964-1726, 125013.1-125013.14Article

Electrorheological Effect and Electro-Optical Properties of Side-on Liquid Crystalline Polysiloxane in a Nematic SolventKANEKO, Kosuke; OTO, Kodai; KAWAI, Toshiaki et al.ChemPhysChem (Print). 2013, Vol 14, Num 12, pp 2704-2710, issn 1439-4235, 7 p.Article

Generalized yield stress equation for electrorheological fluidsKE ZHANG; YING DAN LIU; JHON, Myung S et al.Journal of colloid and interface science. 2013, Vol 409, pp 259-263, issn 0021-9797, 5 p.Article

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