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Capillary Forces in Microassembly - Pierre Lambert
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Pierre Lambert:

Capillary Forces in Microassembly - encadernado, livro de bolso

2007, ISBN: 0387710884

[EAN: 9780387710884], Neubuch, [PU: Springer US Okt 2007], MIKROTECHNOLOGIE - MIKROTECHNIK; TECHNOLOGIE / MIKROTECHNOLOGIE; PED; STEM; SURFACESCIENCE; CAPILLARYFORCES; MICROMANIPULATIONCA… mais…

NEW BOOK. Custos de envio:Versandkostenfrei. (EUR 0.00) BuchWeltWeit Inh. Ludwig Meier e.K., Bergisch Gladbach, Germany [57449362] [Rating: 5 (von 5)]
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Capillary Forces in Microassembly Modeling, Simulation, Experiments, and Case Study - Lambert, Pierre
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Lambert, Pierre:

Capillary Forces in Microassembly Modeling, Simulation, Experiments, and Case Study - encadernado, livro de bolso

2007, ISBN: 0387710884

[EAN: 9780387710884], Gebraucht, guter Zustand, [PU: Springer US], SURFACE SCIENCE,PED,MICROMANIPULATION CASE STUDY,STEM,CAPILLARY FORCES,SURFACE TENSION,MICROASSEMBLY,MODELING,, Neubindu… mais…

NOT NEW BOOK. Custos de envio:Versandkostenfrei. (EUR 0.00) Buchpark, Trebbin, Germany [83435977] [Rating: 5 (von 5)]
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Capillary Forces in Microassembly Modeling, Simulation, Experiments, and Case Study - Lambert, Pierre
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Lambert, Pierre:
Capillary Forces in Microassembly Modeling, Simulation, Experiments, and Case Study - livro usado

2007

ISBN: 9780387710884

[PU: Springer US], Neubindung, Buchschnitt etwas zu weit abgeschnitten, Ausgabe 2007 3487140/12, DE, [SC: 0.00], gebraucht; sehr gut, gewerbliches Angebot, 2007, Banküberweisung, Kreditka… mais…

Custos de envio:Versandkostenfrei, Versand nach Deutschland. (EUR 0.00) Buchpark GmbH
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Lambert Pierre:
Capillary Forces in Microassembly - encadernado, livro de bolso

2007, ISBN: 0387710884

[EAN: 9780387710884], Neubuch, [PU: Springer], pp. 288 52:B&W 6.14 x 9.21in or 234 x 156mm (Royal 8vo) Case Laminate on White w/Gloss Lam, Books

NEW BOOK. Custos de envio: EUR 10.27 Majestic Books, Hounslow, United Kingdom [51749587] [Rating: 4 (von 5)]
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LAMBERT,:
CAPILLARY FORCES IN MICROASSEMBLY: MODELING, SIMULATION, EXPERIMENTS, AND CASE STUDY - encadernado, livro de bolso

2007, ISBN: 9780387710884

Springer, 2007. 1st. Hardcover. New/New., Springer, 2007, 6

IND - ÍndiaCustos de envio: EUR 9.15 DELHI BOOK STORE

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Capillary Forces in Microassembly

Capillary Forces in Microassembly discusses the use of capillary forces as a gripping principle in microscale assembly. Clearly written and well-organized, this text brings together physical concepts at the microscale with practical applications in micromanipulation. Throughout this work, the reader will find a review of the existing gripping principles, elements to model capillary forces as well as descriptions of the simulation and experimental test bench developed to study the design parameters. Using well-known concepts from surface science (such as surface tension, capillary effects, wettability, and contact angles) as inputs to mechanical models, the amount of effort required to handle micro-components is then predicted. Researchers and engineers involved in micromanipulation and precision assembly will find this a highly useful reference for microassembly system design and analysis.

Dados detalhados do livro - Capillary Forces in Microassembly


EAN (ISBN-13): 9780387710884
ISBN (ISBN-10): 0387710884
Livro de capa dura
Ano de publicação: 2007
Editor/Editora: Springer-Verlag New York Inc.
263 Páginas
Peso: 0,581 kg
Língua: eng/Englisch

Livro na base de dados desde 2007-01-20T16:35:20+00:00 (Lisbon)
Página de detalhes modificada pela última vez em 2023-08-04T18:35:00+01:00 (Lisbon)
Número ISBN/EAN: 0387710884

Número ISBN - Ortografia alternativa:
0-387-71088-4, 978-0-387-71088-4
Ortografia alternativa e termos de pesquisa relacionados:
Autor do livro: lambert pierre, pierre tan
Título do livro: force, forces, modeling and simulation, case study, cap, lambert, pierre casé


Dados da editora

Autor: Pierre Lambert
Título: Microtechnology and MEMS; Capillary Forces in Microassembly - Modeling, Simulation, Experiments, and Case Study
Editora: Springer; Springer US
263 Páginas
Ano de publicação: 2007-10-02
New York; NY; US
Língua: Inglês
160,49 € (DE)
164,99 € (AT)
177,00 CHF (CH)
Available
XXII, 263 p.

BB; Hardcover, Softcover / Technik/Maschinenbau, Fertigungstechnik; Materialwissenschaft; Verstehen; PED; STEM; Surface science; capillary forces; microassembly; micromanipulation case study; modeling; surface tension; Surfaces, Interfaces and Thin Film; Engineering Mechanics; Classical and Continuum Physics; Engineering Fluid Dynamics; Nanotechnology; Machines, Tools, Processes; Maschinenbau; Klassische Mechanik; Maschinenbau: Strömungsmechanik; Nanotechnologie; Fertigungstechnik und Ingenieurwesen; EA; BC

Capillary Forces in Microassembly discusses the use of capillary forces as a gripping principle in microscale assembly. Clearly written and well-organized, this text brings together physical concepts at the microscale with practical applications in micromanipulation. Throughout this work, the reader will find a review of the existing gripping principles, elements to model capillary forces as well as descriptions of the simulation and experimental test bench developed to study the design parameters. Using well-known concepts from surface science (such as surface tension, capillary effects, wettability, and contact angles) as inputs to mechanical models, the amount of effort required to handle micro-components is predicted. These developments are then applied in a case study concerning the pick and place of balls in a watch ball bearing. Researchers and engineers involved in micromanipulation and precision assembly will find this a highly useful reference for microassembly system design and analysis.
Covers an interdisciplinary field, between the surface sciences fundamental aspects and more production and assembly oriented issues The developed methodology includes an exhaustive literature review, models and simulations, experimental validation of the models and of the proposed gripping principle, within the framework of a watch bearing assembly case study Provides an exhaustive basis to understand, model (analytically and numerically), and design grippers based on capillary forces Includes supplementary material: sn.pub/extras

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