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This book explains the use of capillary forces as a gripping principle in microscale assembly. Clearly written and well organized, the text integrates physical concepts at the microscale level with practical applications in micromanipulation. Readers get a review of gripping principles and the elements needed to model capillary forces. Moreover, the book provides a description of the simulation and experimental tests developed to study design parameters. A detailed case study concerning the pick and place of balls in a watch's ball bearing helps readers see how theoretical concepts are applied…mehr

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Produktbeschreibung
This book explains the use of capillary forces as a gripping principle in microscale assembly. Clearly written and well organized, the text integrates physical concepts at the microscale level with practical applications in micromanipulation. Readers get a review of gripping principles and the elements needed to model capillary forces. Moreover, the book provides a description of the simulation and experimental tests developed to study design parameters. A detailed case study concerning the pick and place of balls in a watch's ball bearing helps readers see how theoretical concepts are applied in practice. Researchers and engineers in the fields of precision assembly, surface science, microfluidics, and micromechanics will find this a highly useful reference for microassembly system design and analysis.


Dieser Download kann aus rechtlichen Gründen nur mit Rechnungsadresse in A, B, BG, CY, CZ, D, DK, EW, E, FIN, F, GR, HR, H, IRL, I, LT, L, LR, M, NL, PL, P, R, S, SLO, SK ausgeliefert werden.

Autorenporträt
Pierre Lambert, University of Brussels, Belgium
Rezensionen
From the reviews:
"Presented in five parts this text considers the use of capillary forces as a means to grip and assemble micrometre scale structures. ... This book reads easily and is well presented in terms of technical figures and mathematical detail. ... topics discussed are illustrated via a number of examples and, ultimately a thorough case study involving a watch bearing. ... serves best as a reference for those specialists working in the field or for a postgraduate researcher looking for a clear explanation of microassembly principles." (Matthew R. Foreman, Contemporary Physics, Vol. 51 (6), 2010)