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Mechanics of Localized Slippage in Tactile Sensing
Details
This book examines all aspects of localized slippage, including modeling and simulation as well as the construction of novel sensors with slip tactile perception.
Localized slippage occurs during any relative sliding of soft contacts, ranging from human fingertips to robotic fingertips. Although this phenomenon is dominant for a very short time prior to gross slippage, localized slippage is a crucial factor for any to-be-developed soft sensing system to respond to slippage before it occurs. The content of this book addresses all aspects of localized slippage, including modeling and simulating it, as well as applying it to the construction of novel sensors with slip tactile perception.
Presents Mechanics of Localized Slippage in Tactile Sensing Offers for the first time a full description of a slippage of a soft fingertip by the proposed beam bundle model Written by leading experts in the field
Inhalt
Introduction.- Two Dimensional Beam Bundle Model of a Frictional Sliding Soft Fingertip.- Three-Dimensional Beam Bundle Model of a Sliding Soft Fingertip.- Modeling of a Sliding Human Fingertip.- Tactile Sensing via Micro Force/Moment Sensor.- Slip Perception via Soft Robotic Skin Made of Electroconductive Yarn.- Slip Perception using a Tactile Array Sensor.- Concluding Remarks.- Appendix A: Continuous Modeling 2D Elastic Deformation.- Appendix B: Numerical Integration of Ordinary Differential Equations.- Appendix C: Integral over Triangle.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783319378770
- Genre Technology Encyclopedias
- Auflage Softcover reprint of the original 1st edition 2014
- Lesemotiv Verstehen
- Anzahl Seiten 244
- Herausgeber Springer International Publishing
- Größe H235mm x B155mm x T14mm
- Jahr 2016
- EAN 9783319378770
- Format Kartonierter Einband
- ISBN 3319378775
- Veröffentlichung 27.08.2016
- Titel Mechanics of Localized Slippage in Tactile Sensing
- Autor Shinichi Hirai , Anh-Van Ho
- Untertitel And Application to Soft Sensing Systems
- Gewicht 376g
- Sprache Englisch