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Titlebook: Capillary Forces in Microassembly; Modeling, Simulation Pierre Lambert Book 2007 Springer-Verlag US 2007 PED.STEM.Surface science.capillary

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书目名称Capillary Forces in Microassembly
副标题Modeling, Simulation
编辑Pierre Lambert
视频videohttp://file.papertrans.cn/222/221401/221401.mp4
概述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,
丛书名称Microtechnology and MEMS
图书封面Titlebook: Capillary Forces in Microassembly; Modeling, Simulation Pierre Lambert Book 2007 Springer-Verlag US 2007 PED.STEM.Surface science.capillary
描述.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..
出版日期Book 2007
关键词PED; STEM; Surface science; capillary forces; microassembly; micromanipulation case study; modeling; surfac
版次1
doihttps://doi.org/10.1007/978-0-387-71089-1
isbn_softcover978-1-4419-4382-8
isbn_ebook978-0-387-71089-1Series ISSN 1615-8326 Series E-ISSN 2365-0680
issn_series 1615-8326
copyrightSpringer-Verlag US 2007
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Transport Network Survivability,As it has been shown throughout this first part, many current researches focus on grippers miniaturization. At scales larger than typically 1 mm, the reference gripping technique for components (typically SMD components) is the vacuum gripping. This technique is also applied for submillimetric applications; however, it seems to reach its limits.
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Transport Network Survivability,We will now compare several methods to estimate the capillary force in several configurations. Each method will be presented with one or two configurations but not all configurations will be detailed for all methods. The results are summarized at the end of this chapter.
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Transport Network Survivability,This chapter details the computation of capillary forces based on the solving of the Laplace equation (6.8) in order to compute the meniscus shape. The equivalence between this method and the energy minimization approach will be treated in the next chapter.
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Transport Network Survivability,This chapter gives evidence of the equivalence between the energetic approach and the direct formulation based on the Laplace and the tension terms: . where . is given by (6.9), . by (6.10) and . by (7.1). . is the separation distance between both solids.
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Next Generation Transport NetworksThis chapter aims at applying the force models presented in the previous chapters to the case study of a watch ball bearing.
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