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Shape-Memory Effect in PolymersLENDLEIN, Andreas.Macromolecular chemistry and physics (Print). 2013, Vol 214, Num 11, issn 1022-1352, 113 p.Serial Issue

A simple ultrahigh vacuum shape memory effect shutter mechanismJARDINE, A. P; AHMAD, M; MCCLELLAND, R. J et al.Journal of vacuum science and technology. A. Vacuum, surfaces, and films. 1988, Vol 6, Num 5, pp 3017-3018, issn 0734-2101Article

Applications for shape-memory polymer composites in aerospaceJINSONG LENG; UWU LIU; HAIBAO LV et al.JEC composites. 2012, Num 72, pp 56-58, issn 1639-965X, 3 p.Article

New directions in the chemistry of shape memory polymers : SHAPE MEMORY AND SHAPE MORPHING POLYMERSBERG, Gayla J; McBRIDE, Matthew K; CHEN WANG et al.Polymer (Guildford). 2014, Vol 55, Num 23, pp 5849-5872, issn 0032-3861, 24 p.Article

Des matériaux magiques: les alliages à mémoire de forme = Magical materials: shape memory alloysRICHARDEAU, A.L' Ingénieur constructeur ETP. 1988, Num 352-353, pp 44-45, issn 0046-9513Article

Effect of Aging on Microstructure and Shape Memory Properties of a Ni-48Ti-25Pd (At. Pct) AlloySASAKI, Taisuke T; HORNBUCKLE, B. Chad; NOEBE, Ronald D et al.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2013, Vol 44, Num 3, pp 1388-1400, issn 1073-5623, 13 p.Article

Alliages à mémoire de forme = Shape memory alloysWEBER, J. D.Cahiers du Groupe français de rhéologie. 1990, Vol 8, Num 3, pp 203-206, issn 0373-5699, 4 p.Article

Development of shape-memory alloy actuators. Performance assessment and introduction of a new composing approachHIROSE, S; IKUTA, K; UMETANI, Y et al.Advanced robotics. 1989, Vol 3, Num 1, pp 3-16, issn 0169-1864Article

An Overview of Applications of the Mesomechanical Approach to Shape Memory Phenomena : Completed by a New Application to Two-way Shape MemoryKAFKA, V.Journal of intelligent material systems and structures. 2008, Vol 19, Num 1, pp 3-17, issn 1045-389X, 15 p.Article

Shape memory effect of grain refined Ni54Mn25Ga21 alloy with high transformation temperatureYAN LI; YAN XIN; CHENGBAO JIANG et al.Scripta materialia. 2004, Vol 51, Num 9, pp 849-852, issn 1359-6462, 4 p.Article

The device Klyost for clipping vessels and soft-elastic tubular structuresRYKLINA, E. P; KHMELEVSKAYA, I. Yu; PROKOSHKIN, S. D et al.Journal de physique. IV. 2003, Vol 112, pp 1129-1132, issn 1155-4339, 4 p., 2Conference Paper

An initial investigation into active disassembly using shape memory polymersCHIODO, J. D; HARRISON, D. J; BILLETT, E. H et al.Proceedings of the Institution of Mechanical Engineers. Part B. Journal of engineering manufacture. 2001, Vol 215, Num 5, pp 733-741, issn 0954-4054Article

MPI-2 one-sided communications on a Giganet SMP clusterGOŁEBIEWSKI, Maciej; TRÄFF, Jesper Larsson.Lecture notes in computer science. 2001, pp 16-23, issn 0302-9743, isbn 3-540-42609-4Conference Paper

Training two-way shape memory alloy by reheat treatmentHUANG, W; TOH, W.Journal of materials science letters. 2000, Vol 19, Num 17, pp 1549-1550, issn 0261-8028Article

Thermally Induced Shape-Memory Effects in Polymers: Quantification and Related Modeling ApproachesHEUCHEL, Matthias; SAUTER, Tilman; KRATZ, Karl et al.Journal of polymer science. Part B. Polymer physics. 2013, Vol 51, Num 8, pp 621-637, issn 0887-6266, 17 p.Article

Investigation of a multiple trigger active disassembly elementZHANG, Hong-Chao; CARRELL, John; SHIREN WANG et al.CIRP annals. 2012, Vol 61, Num 1, pp 27-30, issn 0007-8506, 4 p.Conference Paper

Recent advances in polymer shape memoryTAO XIE.Polymer (Guildford). 2011, Vol 52, Num 22, pp 4985-5000, issn 0032-3861, 16 p.Article

Mathematical Models of Behavior of Polymer Material with Shape MemorySTROGANOV, V. F; KAYUMOV, R. A; AKHMETSHIN, A. S et al.Polymer science. Series D (Print). 2011, Vol 4, Num 4, pp 334-338, issn 1995-4212, 5 p.Article

The formation of micro-protrusions atop a thermo-responsive shape memory polymerLIU, N; HUANG, W. M; PHEE, S. J et al.Smart materials and structures. 2008, Vol 17, Num 5, issn 0964-1726, 057001.1-057001.6Article

A generic approach for producing various protrusive shapes on different size scales using shape-memory polymerLIU, N; HUANG, W. M; PHEE, S. J et al.Smart materials and structures. 2007, Vol 16, Num 6, issn 0964-1726, N47-N50Article

Cast pipe joints of Fe-15Mn-5Si-8Cr-5Ni-0.25C shape memory alloy with high carbon contentZHAO, M; LI, J. C; JIANG, Q et al.Materialwissenschaft und Werkstofftechnik. 2003, Vol 34, Num 8, pp 756-759, issn 0933-5137, 4 p.Article

Fabrication of micromachined TiNi based microgripper with compliant structureYONGQING FU; HEJUN DU.SPIE proceedings series. 2003, pp 38-47, isbn 0-8194-4976-8, 10 p.Conference Paper

Intelligent gelsNAGASAWA, Hiroki; JIAN PING GONG; OSADA, Yoshihito et al.L' Actualité chimique (Paris. 1973). 2002, Num 3, pp 175-181, issn 0151-9093Article

On the tensile and torsional properties of pseudoelastic NiTiADLER, P. H; YU, W; PELTON, A. R et al.Scripta metallurgica. 1990, Vol 24, Num 5, pp 943-947, issn 0036-9748Article

Development of a shape memory alloy actuator. Improvement of output performance by the introduction of a σ-mechanismHIROSE, S; IKUTA, K; SATO, K et al.Advanced robotics. 1989, Vol 3, Num 2, pp 89-108, issn 0169-1864Article

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