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»áÒéÃû³Æ£¨Ó¢ÎÄ£©£º International Conference on Smart Materials and Nanotechnology in Engineering
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ÒéÌ⣺ Smart Materials and Nanotechnology


»áÒéÍøÕ¾£º http://smart.hit.edu.cn/

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ÐÕÃû£º Yoseph Bar-Cohen
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¼ò½é£º Jet Propulsion Lab.(JPL)
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ÐÕÃû£º Vijay K. Varadan
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¼ò½é£º NASA,USA
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ÐÕÃû£º Yiu-Wing Mai
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»áÒé±³¾°½éÉÜ£º Smart materials can be defined as materials that sense and react to environmental conditions or stimuli (e.g. mechanical, chemical, electrical, or magnetic signals). In the last decade, a wide range of novel smart materials have been produced for aerospace, transportation, telecommunications, and domestic applications. Furthermore there is increased activity in integrating smart materials with nanotechnology to develop novel materials for the applications in biomaterials, sensors, actuators, and textiles. Nanotechnology would permit control of matter at the level of atoms and molecules which would form the building blocks of smart materials. Smart materials are thus evolving from traditional fiber reinforced composite through functionally graded materials to the current nanotechnologically grown materials. These materials will thus have the capability of closely mimicking (biomimetics) nature enabling structures to act like human skin, or a leaf¡¯s chlorophyll.

All abstracts and full papers to be submitted electronically   to:
   Smart@hit.edu.cn (Preferred)
or Smart_hit2007@yahoo.com.cn

Conference Secretary                 
Dr. Fuhong Dai
PO Box 3011, No.2 Yikuang Street,
Centre for Composite Materials and Structures£¬
HIT Science Park, Harbin Institute of Technology,
Harbin 150080,PR China
Tel: +0086-451-86414145
     +0086-451-86402328
Fax: +0086-451-86402343

»áÒéÍøÖ·£º http://smart.hit.edu.cn/  
Õ÷ÎÄ·¶Î§¼°ÒªÇó£º Topics of interest in the areas of Smart Materials and Nanotechnology include:
Shape-memory alloys and polymer
Piezo-materials
Electro and magneto restrictive materials and fluids
Fibre optic sensor
MEMS sensors and actuators
Chiral materials
Tunable dielectrics
Conducting polymers
Polymer gels
Super-elastic glasses
Thermo-electric materials
Electro-chromic
Photo-chromic and thermo-chromic materials
Dielectric elastomers
Fluorescent materials
Nano-composite
Photo-luminescent
Electro-luminescent and phosphorescent materials
Applications include but not limited to:
Morphing structures, aircraft systems, space systems, composite structures, civil systems, automotive systems, flexible robotic systems, adaptive optics, active vibration control, active shape control, active noise suppression, active damping control, structural health monitoring, damage detection and mitigation, damage and remaining life assessment, modeling, analysis, and design techniques, modeling and mechanics of structural sensing and actuation, structural integrity and interfaces, placement of actuators and sensors.
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