NATO Lectures: Nanotechnology Aerospace Applications - 2006

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> .� NORTH ATLANTIC TREATY ORGANISATION �&l a « RESEARCH AND TECHNOLOGY ORGANISATION LECTURE SERIES AVT-129b on "Nanotechnology Aerospace Applications - 2006" sur" Les appcations aespacia/es des nanotechno/ogies organized by the Applied Vehicle Technology Panel to be held in USA, Seale on 16 -17 Ocber 2006 CANADA, Monal on 19 -20 Ocber 2006 SLOVENIA, Ljubljana on 6 -7 November 2006 FRANCE, Bordeaux on 9 -10 November 2006 This Leure Sees is open citizens fm both TO and Partnerip-for-Pea (P) Nations. test Enrolment Date TO Nations ptP Nations Mony, 9 Octor 2006 Mony, 2 Octor 2006 Enrol on-line at hp://w..na.inmeengs.asp If you are unable to enrol via the inteet, please use the attached enrolment fo to enrol via f ax. Simulnus interptation i nto French will only be provided in Bordeaux, Fnce. All other presentations and discussions will be held in English. Background The mission of RTO is to conduct and promote co-operative research and information exchange. RTO consists of a three level organization: the Research and Technology Board (RTB), the Panels and e Technical Teams. The Applied Vehicle Technology Panel (A} is one of the seven Panels under the RTB. The mission of the Applied Vehicle Technology Panel is to improve the perman, affordability and safety of vehicle plaorms, propulsion and power systems through the advancement of appropriate technologies. The panel addresses technology issues related to vehicle plaorms, propulsion and power systems operating in all environmenʦ, including land, sea, air and spa, for both new and aging systems. Theme Nanotechnology, which deals with the creation of mateals, devices and sysms in the nanometer sle (1-100 nm) through manipulating maer at that scale and exploiting novel properties arising because of e nanosle, will have an impact on numerous commercial, defense, and spa applications. The lectures will provide a general introduction with selected examples into this novel and emeing chnology, including nanomaterials synthesis and characteration, nanofabricatlon, applicaons, and commercialisation. The fabrication will be classified into top down nanochnology utilizing highnd lithography and similar technologies, boom up technologies building up the products at the atom level, and nanopaicle & nanotube production. An additional classifition will be discussed on e basis of the enabling properties derived from the final producʦ and novel propeies not und in bulk or micro sized paicles. Characterization techniques will be presented for measuring nanopaicles and nanotechnology-based products for all geometric aspects and functional characteristics. The discussions on nanotechnology applications will include electronics, mputing and data stoge, sensors and insmentation, energy, heallh and medicine, li style secto and defense. The focus will be on new and enhand capabilities in all of the above sectors and the impact on the society. Examples of specific aerospace applitions include high streng & low weight composis, improved electroni and displays with low power consumption, varie of physil sensors, multifunctional materials with emdded sensors, and other examples of what the aerospa indust can expect from e field of nanotechnology. Also potential energetics & power applications will be discussed. MEMS/nanochnology integration will be addressed as a potential to improve MEMS devices through nanotechnology and to utilize MEMS to explore nanoscale systems. Finally, a forecast of short term to long term prospecʦ r potential applications will discussed, including the challenges curntly being faced to commercialize nanotechnology and the efforts across the world. Theme La nanotechnologie, qui conceme la fabrication de materiaux, d'appareils et de systemes a I'echelle du nanometre (1-100 nm} grAce a la manipulation de matiere a lte echelle et I'exploitation des nouvelles proprietes decoulant de I'echelle nanometrique, aura un impact sur nombre d'applitions commerciales, spatiales, et de defense. Les conferens offriront, avec des exemples choisis, une introduction generale celte nouvelle technologie emergente, comprenant la synthese et la caracterisation des nanomateriaux, la nano fabrication, les applications et la commercialisation. La fabrication sera classee en nanotechnologie approche desndante, utilisant la lithographie de pointe et autres technologies similais, en technologies a approche asndante, qui assemblent les produiʦ au niveau de I'atome, et en production de nano paicules et de nano lubes. Une classifition supplementai sera envisagee, sur la base des proprietes facilitantes derivees des produits finaux et des nouvelles proprietes qui n'existent pas dans les grosses paicules ou les microparticules. Des techniques de caracterisation seront presentees, pour la mesure des nano particus et des produiʦ bases sur la nanotechnologie, conrnant tous les aspecʦ geometriques et les racteristiques fonctionnelles. Les tables rondes sur les applications de la nanotechnologie traiteront des domaines de I'electronique, de l'informatique el du stockage des donnees, des capteurs' et de I'appareillage de conlrOle, de I'energie, de la sante et de la medecine, des styles de vie et de la defense. l'accent sera mis sur les nouvelles aptitudes et I'amelioration des capacites dans tous les secteurs mentionnes ci-dessus, et leur impact sur la societe. Panmi les exemples d'applitions aerospatiales specifiques, on compte les mariaux mposites lege et hautement resistants, les systemes electroniques et les afficheurs ameliores a basse nsommation d'energie, divers pu physiques, les materiaux mullifonctions avec capurs integres. el d'autres exemples de ce que l'industrie aerospatiale peut altendre du domaine de la nanotechnologie. les applications electriques et energetiques potentielles seront egalement abordees. L'integration MEMS (ou microsystemes electromeniques)/nanotechnologie sera envisagee en tant que potentiel d'amelioration des MEMS par la nanotechnologie, et d'utilisation des MEMS pour explorer les syslemes a I'echelle nanometrique. Pour finir, une prevision des peפctives a cou terme et a long terme des applications potentielles sera developpee, comprenant les des actuellemenl rencontres pour commercialiser la nanotechnologie et les effo accomplis au niveau international.

Transcript of NATO Lectures: Nanotechnology Aerospace Applications - 2006

Page 1: NATO Lectures: Nanotechnology Aerospace Applications - 2006

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NORTH ATLANTIC TREATY ORGANISATION

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RESEARCH AND TECHNOLOGY ORGANISATION

LECTURE SERIES AVT-129b

on "Nanotechnology Aerospace Applications - 2006"

sur" Les applications aerospacia/es des nanotechno/ogies ..

organized by the

Applied Vehicle Technology Panel

to be held in

USA, Seattle on 16 -17 October 2006

CANADA, Montreal on 19 - 20 October 2006

SLOVENIA, Ljubljana on 6 - 7 November 2006

FRANCE, Bordeaux on 9 -10 November 2006

This Lecture Series is open to citizens from both NATO and Partnership-for-Peac;e (PfP) Nations.

Latest Enrolment Date

NATO Nations

ptP Nations Monday, 9 October 2006 Monday, 2 October 2006

Enrol on-line at http://www.rta.nato.intimeetings.asp

If you are unable to enrol via the internet, please use the attached enrolment form to enrol via fax.

Simultaneous interpretation into French will only be provided in Bordeaux, France. All other presentations and

discussions will be held in English.

Background The mission of RTO is to conduct and promote co-operative research and information exchange. RTO consists of a three level organization: the Research and Technology Board (RTB), the Panels and the Technical Teams. The Applied Vehicle Technology Panel (AVT} is one of the seven Panels under the RTB.

The mission of the Applied Vehicle Technology Panel is to improve the performance, affordability and safety of vehicle platforms, propulsion and power systems through the advancement of appropriate technologies. The panel addresses technology issues related to vehicle platforms, propulsion and power systems operating in all environments, including land, sea, air and space, for both new and aging systems.

Theme

Nanotechnology, which deals with the creation of materials, devices and systems in the nanometer scale (1-100 nm) through manipulating matter at that scale and exploiting novel properties arising because of the nanoscale, will have an impact on numerous commercial, defense, and space applications. The lectures will provide a general introduction with selected examples into this novel and emerging technology, including nanomaterials synthesis and characterization, nanofabricatlon, applications, and commercialisation.

The fabrication will be classified into top down nanotechnology utilizing high-end lithography and similar technologies, bottom up technologies building up the products at the atom level, and nanoparticle & nanotube production. An additional classification will be discussed on the basis of the enabling properties derived from the final products and novel properties not found in bulk or micro sized particles. Characterization techniques will be presented for measuring nanoparticles and nanotechnology-based products for all geometric aspects and functional characteristics.

The discussions on nanotechnology applications will include electronics, computing and data storage, sensors and instrumentation, energy, heallh and medicine, life style sectors and defense. The focus will be on new and enhanced capabilities in all of the above sectors and the impact on the society. Examples of specific aerospace applications include high strength & low weight composites, improved electronics and displays with low power consumption, variety of physical sensors, multifunctional materials with embedded sensors, and other examples of what the aerospace industry can expect from the field of nanotechnology. Also potential energetics & power applications will be discussed.

MEMS/nanotechnology integration will be addressed as a potential to improve MEMS devices through nanotechnology and to utilize MEMS to explore nanoscale systems. Finally, a forecast of short term to long term prospects for potential applications will be discussed, including the challenges currently being faced to commercialize nanotechnology and the efforts across the world.

Theme

La nanotechnologie, qui conceme la fabrication de materiaux, d'appareils et de systemes a I'echelle du nanometre (1-100 nm} grAce a la manipulation de matiere a celte echelle et it I'exploitation des nouvelles proprietes decoulant de I'echelle nanometrique, aura un impact sur nombre d'applications commerciales, spatiales, et de defense. Les conferences offriront, avec des exemples choisis, une introduction generale it celte nouvelle technologie emergente, comprenant la synthese et la caracterisation des nanomateriaux, la nano fabrication, les applications et la commercialisation.

La fabrication sera classee en nanotechnologie it approche descendante, utilisant la lithographie de pointe et autres technologies similaires, en technologies a approche ascendante, qui assemblent les produits au niveau de I'atome, et en production de nano particules et de nano lubes. Une classification supplementaire sera envisagee, sur la base des proprietes facilitantes derivees des produits finaux et des nouvelles proprietes qui n'existent pas dans les grosses particules ou les microparticules. Des techniques de caracterisation seront presentees, pour la mesure des nano particules et des produits bases sur la nanotechnologie, concernant tous les aspects geometriques et les caracteristiques fonctionnelles.

Les tables rondes sur les applications de la nanotechnologie traiteront des domaines de I'electronique, de l'informatique el du stockage des donnees, des capteurs' et de I'appareillage de conlrOle, de I'energie, de la sante et de la medecine, des styles de vie et de la defense. l'accent sera mis sur les nouvelles aptitudes et I'amelioration des capacites dans tous les secteurs mentionnes ci-dessus, et leur impact sur la societe. Panmi les exemples d'applications aerospatiales specifiques, on compte les ma\l!riaux composites legers et hautement resistants, les systemes electroniques et les afficheurs ameliores a basse consommation d'energie, divers capteurs physiques, les materiaux mullifonctions avec capteurs integres. el d'autres exemples de ce que l'industrie aerospatiale peut altendre du domaine de la nanotechnologie. les applications electriques et energetiques potentielles seront egalement abordees.

L'integration MEMS (ou microsystemes electromecaniques)/nanotechnologie sera envisagee en tant que potentiel d'amelioration des MEMS par la nanotechnologie, et d'utilisation des MEMS pour explorer les syslemes a I'echelle nanometrique. Pour finir, une prevision des perspectives a court terme et a long terme des applications potentielles sera developpee, comprenant les detis actuellemenl rencontres pour commercialiser la nanotechnologie et les efforts accomplis au niveau international.

Page 2: NATO Lectures: Nanotechnology Aerospace Applications - 2006

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lecture Sarles Director

Dr. Klaus SCHAOOW (USA) Schadaw Technology [email protected]

Lecture ..

Or. Ayman B.·FATATRY (UK) BAE Systems.

" Loughborough University [email protected]

Or. MeYYII MEYVAPPAN (USA) MM Associates [email protected]

Local Enrotrnent Coordinators

Dr. Oudea COUMAR Service TES24 EAOS-ST, BP:3002 66. Route de Vemeuil

78133 Las Mureaux cedex FRANCE

Mr. Henne VAN HEEREN (NL) EnabiingM3 [email protected]

Tel:+ 33 (0)13 9 OS 28 34 Fax: +33 (0)1390613 11 �[email protected]

Ms. Evelyn HIRT Pacific Northwest National laboratory (a Dept of Energy Lab) P.O. Box 999, MSIN K5-10 Richland. WA 9 9352 USA Tel: +1 509 375 4425 Fax; +15093753614 [email protected]

Prof. Ion STIHARU Department of Mechanical Engineering Concordia Univeralty

1455 de Maisonneuve Blvd. West. CR-211 Montreal, QC, H3G 1 M8, CANADA Tel: +1 5148483152 Fax: +1 5148488635 [email protected]

Prof. Baldomlr ZAJC Univeralty of Ljubljana Rakovniska 25 1000 Ljubljana SLOVENIA Tel. +396 1 476 83 49 Fax +386 1 4264 630 [email protected]

RTA ContactlEnrolment Coordinator for ptp and non-NATO

Ms. Claire POMENYA Tel: +33 (0)1 55 61 22 14 Operations and Coordination Division Fax: +33 (0)1556196 10

RTA Paris [email protected]

Lecture Series programme

" DAY ONE

08:30 REGISTRATION 09:00 OPENING CEREMONY

National Authorities 09:10 Introduction. Overview

", ..

Dr. Klaus Schadow and local Coordinator

09:30 Introduction inio Nanotechnology Dr. Meyya Meyyappan

10:30 BREAK 11 :00 Fabrication

Mr. Henna van Heeren

12:00 LUNCH 13:00 Materials

Mr. Hanne van Heeren

14:00 Characterization Dr. Ayman Ef.Fatatry

15:00 BREAK 15:30 Ufestyle AppliCations

Mr. Henna van Heeren

16:3D Defense Applications Dr. Ayman Ef-Fatalry

DAY TWO

08:30 Aerospace Applications Dr. Mayya MayyappaR

09:30 Energe"Ucs and Power Generation Dr. Klaus Schadaw

10:30 BREAK 10:45 MEMSlNanotechnology integration

Dr. Killus Schadaw

11:45 Commercial�tion Dr. Meyya Mayyappan

12:30 wrap.up

All

APPLICATION TO ENROL LECTURE SERIES AVT-129b

"Nanotechnology Aerospace Applications-2aos"

o USA, Seattle on 18 -17 October 2006

o CANADA, Montreal on 19 - 20 October 2006

o SLOVENIA, LJubljana on 8 - 7 November 2006

o FRANCE, Bordeaux on 9 - 10 November 2006

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Latest Enrolment Dates

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grole at the meeting will be: RTq Member Co-Author

D Author . . o Other Participant

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: For Usa of Enrolment Coordinator: I

: I approve tihis application and have sent an infonnation package. : Signed: . " Date: : l p��;;��:i,;;·"'fu;;i;·;��\;;n�r:it.(�r·ih�;;;�l��rJ�iJ : L COOn:IinatOr"Who WlU; upon �Pt of YoUr, applidQtiOn'tO" enrol, forWald I : ,�" gen�rai;jnforrnatip"f!, �';"Which�'�1 'jiK:i�},traveJ, ·advi�:�.j : .. recOiniTlendeda<x:ommodalioiie��· .• ··.-:.:: '),��,.,1.,, ' : .... > ... _, .. � �' , . : • Participants from Partnership-fur-Peace (PJP) countries must send this : for"!1 to the RTA Enrolment Coordinator, Ms. Claire POMENYA.

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