Browse > Article

MR 유체의 특성과 진동 분야에 관한 응용연구 사례 및 연구동향  

Choe, Seung-Bok (인하대학교 기계공학과)
Hong, Seong-Ryong (매릴랜드대학 항공공학과)
Wereley, Morman M. (매릴랜드대학 항공공학과)
Publication Information
Journal of KSNVE / v.15, no.1, 2005 , pp. 9-19 More about this Journal
Keywords
Citations & Related Records
연도 인용수 순위
  • Reference
1 Birman V., 1997. Review of Mechanics of Shape Memory Alloy Structures. Applied Mechanics Review. 50, pp. 629-645
2 Rogers C. A., Barker D. K., and Jaeger D. A.,1998, Introduction to Smart Materials and Structures, Smart Materials, Stmctures, and Mathematical Issues(Selected Papers Presented at the US Army Research Office Workshop on Smait Matenals, Structures and Mathematical Issues), C. A. Rogers(ed), Technomic, Lancaster, pp. 17-28
3 Jackson C. M., Wangner J. J., and Wasilewski R. J., 1972, 55-Nitino1-The Alloy with a Memoiy : Its Physical Metallurgy, Properties, and Applicadons, NASA SP-5110
4 Brinson L. C., 1993, One-dimensional Constitutive Behavior of Shape Memory Alloys : Thermomechanical Derivation with Non-constant Material Functions and Redefined Martensite Intenal Variable, J Intelligent Mat Syst Struct 4,pp.229-242   ScienceOn
5 Brinson L. C. and Lammering R., 1993, Finite Element Analysis of the Behavior of Shape Memory Alloys and their Application, Int J Solids Struct 30, pp.3261-3280   ScienceOn
6 Abeyaratne R. and Knowles J. K, 1993, One-dimensional Continuum Model for Shape Memory Alloys, Int J Solids Struct 31, pp,2229-2249
7 Cho M., Kim S., 2005, Structural Morphing Using Two-way Shape Memory Effect of SMA. Int J. Solid and Structures. 42, pp.1759-1776   ScienceOn
8 Masuda A., Noori M., 2002, Optimization of Hysteretic Characteristics of Damping Devices based on Pseudoelastic Shape Memoiy Alloys.Int J. Non-Linear Mech. 37, pp.1375-1386   ScienceOn
9 Sun S., Rajapakse R. K. N. D., 2003,Simulation of Pseudoelastic Behaviour of SMA under Cyclic Loading. Computational Materials Science.28,pp.663-674   ScienceOn
10 Ghomshei M. M., Tabandeh N., Ghazavi A.,Gordaninejad F., 2005, Nonlinear Transient Response of a Thick Composite Beam with Shape Memory Alloy Layers. Compososites: Part B.36,pp.9-24   ScienceOn
11 Gandhi F., Chapuis G., 2002, Passive Damping Augmentation of a Vibrating Beam Using Pseudoelastic Shape Memory Alloy Wires. J. Sound and Vibration. 250, pp.519-539   ScienceOn
12 Ostachowicz W. M., Kaczmarczyk S., 2001,Vibration of Composite Plates with SMA Fibres in a Gas Stream with Defects of the Type of Delamination. Composite Structures. 54, pp.305-311   ScienceOn
13 Cross W. B., Kariotis A. H., and Stimler F. J.,1970, Nitinol Characterization Study, NASA CR-1433
14 Tanaka K., Kobayashi S. and Sato Y., 1986, Thermomechanics of Transformation Pseudoe-lasticity and Shape Memory Effecct in Alloys, Int J Plasticily 2, pp.59-72   ScienceOn
15 Crawley E. F, 1994, Intelligent Structures for Aerospace : a Technology Overview and Assessment, AIAA J 32, pp. 1689-1699   ScienceOn
16 Perkins J.(Ed.), 1975, Shape Memory Effects in Alloys, Plenum Press, New York
17 Liang C. and Rogers C. A., 1990, One-Dimensional Thermomechanical Constitutive Relations for Shape Memory Materials, J Inteligent Mat Syst Stuc 1, pp.207-234
18 Humbeeck J. V., Shape Memory Alloys : a Material and a Technology. Adv Eng Mater. 3, pp.837-850S. R. White, J. B. Berman, 1998. Thermo-Mechanical Srsponse of SMA Composite Beams with Embedded Nitinol Wires in an Epoxy Matrix. J. Int. Mater Sys Struct. 9, pp.391-400
19 Shaw J. A. and Kyriakides S., 1995,Thermomechnical Aspects of Nitinol, J Mech Phys Solids 43, pp.1243-1281   ScienceOn
20 Gandhi M. V. and Thompson B. S., 1992,Smart Material Stmctures, Chapman & Hall,London
21 Chen Q., Levy C., 1999, Vibration Analysis and Control of Flexible Beam by Using Smart Damping Structures. Composites : Part B. 30,pp.395-406   ScienceOn
22 Wayman C. M. and Duerig T. W., 1990,Intriduction to Martensite and Shape Memory,Engineering Aspects of Shape Memoiy Alloys, T. W. Duerig et al(eds), Butterworth-Heinemaim, London, pp.3-20
23 Baumgart F, Jorde J., and Reiss H. G., 1976,Technische Mitteilunger Krupp, Forschung-Sberichte, Vol.34, July, Translation from German : Memory Alloys-properties,Phenomenological Theory and Applications,NASA TM-77904
24 Williams K. A., Chiu G. T.-C., Bernahard R. J.,2002, Adaptive-passive Absorbers Using Shape Memory Alloys. J. Sound and Vibration. 249.pp.835-848   ScienceOn
25 Funakubo H., Shape Memory Alloys, 1987, Cordon and Bleach, New York
26 Abeyaratne R. and Kim S. J., 1997, Cyclic Effects in Shape-memory Alloys : A One-Dimensional Comtinuum Model, Int J Solids Struct 34,pp.3273-3289   ScienceOn
27 Krishnan R. V., Delaey L., Tas H. and Warlimont H., 1974, Review, Thermoplasticity,Pseudoelasticity and the Shape Memory Effects Associated with Martensitic Transformation, J Mat Sci 9, pp. 1535-1544
28 Hanagud S., Nagesh Habu G. L., and Zhang J.,1992, Smart Structures-An Overview, Developments in Theoretical and Applied Mechanics, Vol. 16, B Antar et al.(eds), Univ of Tennessee Space Inst, Tullahoma T. N.,II.20.1-II.20.9
29 Wayman C. M., 1975. Deformation,Mechanisms and Other Characteristics of Shape Memory Alloys, Shape Memory Effects in Alloys, J perkins, Plemum Press, New York,pp.1-27
30 Rodrigeues C. and Brown L. C., 1975 ,Mechanical Properties of SME Alloys, Shape Memory Effects in Alloys, J prkins(ed), Plenum Press, New York, pp.29-58
31 Boyd, J. G. and D. C. Lagoudas, 1996, A Thermodynamic Constitutive Model for the Shape Memory Alloy Materials Part I, the Monolithic Shape Memory Alloy, International Journal of Plasticity 12, pp.805-842   ScienceOn
32 Lau K. T., 2002, Vibration Characterisdcs of SMA Composite Beams with Different Boundary Conditions. Materials and Design. 23,pp.741-749
33 Williams K. A., Chiu G. T., Bernhard R. J.,2005, Dynamic Modeling of a Shape Memory Alloy Adaptive Tuned Vibration Absorber. J. Sound and Vibration. 280, pp.211-234   ScienceOn
34 Park J., Kim J., Moon S., 2004, Vibration of Thermally Post-buckled Composite Plates Embedded with Shape Memory Alloy Fibers.Composite Structures. 63, pp.179-188   ScienceOn
35 Wayman C. M. and Shimizu K.., 1992, Shape Memory(marmem) Effect in Alloys, Metal Sci J 6,pp.175-183   ScienceOn
36 Paine J. S. N. and Rogers, C. A., 1994, Review of Multi-functional SMA Hybrid Composite Material and Their Applications, Adaptive Structures and Compsite Materials : Analysis and Application, E. Garcia, H. Cudney
37 Paine J. S. N., Rogen, C. A., and Smith R. A.,1994, Adaptive Composite Materials withShape Memory Alloy Actuators for Cylinders and Pressure Vessel, Proc of 1994 SPIE Smart Structures and Intelligent Systems Symp, Smart Structures and Intelligent Systems, NW hagood(ed), Vol.2 2190, pp.390-401
38 Lagoudas, D. C., Z. Bo and M. A. Qidwai, 1996, A Unified Thermodynamic Constitutive Model for Sma and Finite Element Analysis of Active Metal Matrix Composite, Mechanics of Composite Materials and Structures 3, pp.153-179
39 Wada B. K., Fanson J. L., and Crawley E. F,1990. Adaptive Structures, J Intelligent Mat Syst Struct 1,pp.157-174
40 Liang C. and Rogers C. A., 1992, Design of Shape Memory Alloy Actuators', J Mech Design 114,pp.223-230
41 Collet M., Fiktete E., Lexcellent C., 2001,Analysis of the Behavior of a Shape Memory Alloy Beam under Dynamical Loading. Eur. J.Mech. A/Solids. 20, pp.615-630   ScienceOn