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The Science of Soft Robots [electronic resource] : Design, Materials and Information Processing / edited by Koichi Suzumori, Kenjiro Fukuda, Ryuma Niiyama, Kohei Nakajima.

Contributor(s): Material type: TextTextLanguage: English Series: Publication details: Singapore : Springer Nature Singapore : Imprint: Springer, 2023.Edition: 1st ed. 2023Description: XVI, 406 p. 213 illus., 131 illus. in color. online resourceISBN:
  • 9789811951749
Subject(s): DDC classification:
  • 006.3 23
Online resources:
Contents:
Chapter 1: Introduction -- Chapter 2: Soft Mechanisms -- Chapter 3: Biological Mechanisms -- Chapter 4: Soft Manipulation and Locomotion -- Chapter 5: Basics of Polymer -- Chapter 6: Biological Material -- Chapter 7: Flexible and Stretchable Sensors -- Chapter 8: Soft Actuators -- Chapter 9: Modeling and Control of Continuum Body -- Chapter 10: Material Intelligence -- Chapter 11: Information Processing using Soft Body Dynamics.
Summary: The goal of this textbook is to equip readers with as structured knowledge of soft robotics as possible. Seeking to overcome the limitations of conventional robots by making them more flexible, gentle and adaptable, soft robotics has become one of the most active fields over the last decade. Soft robotics is also highly interdisciplinary, bringing together robotics, computer science, material science, biology, etc. After the introduction, the content is divided into three parts: Design of Soft Robots; Soft Materials; and Autonomous Soft Robots. Part I addresses soft mechanisms, biological mechanisms, and soft manipulation & locomotion. In Part II, the basics of polymer, biological materials, flexible & stretchable sensors, and soft actuators are discussed from a materials science standpoint. In turn, Part III focuses on modeling & control of continuum bodies, material intelligence, and information processing using soft body dynamics. In addition, the latest research results and cutting-edge research are highlighted throughout the book. Written by a team of researchers from highly diverse fields, the work offers a valuable textbook or technical guide for all students, engineers and researchers who are interested in soft robotics.
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Holdings
Item type Current library Call number Materials specified Status Date due Barcode Item holds
E-Books E-Books National Library of India Online Resource 006.3 (Browse shelf(Opens below)) Available EBK000045726ENG
Total holds: 0

Chapter 1: Introduction -- Chapter 2: Soft Mechanisms -- Chapter 3: Biological Mechanisms -- Chapter 4: Soft Manipulation and Locomotion -- Chapter 5: Basics of Polymer -- Chapter 6: Biological Material -- Chapter 7: Flexible and Stretchable Sensors -- Chapter 8: Soft Actuators -- Chapter 9: Modeling and Control of Continuum Body -- Chapter 10: Material Intelligence -- Chapter 11: Information Processing using Soft Body Dynamics.

The goal of this textbook is to equip readers with as structured knowledge of soft robotics as possible. Seeking to overcome the limitations of conventional robots by making them more flexible, gentle and adaptable, soft robotics has become one of the most active fields over the last decade. Soft robotics is also highly interdisciplinary, bringing together robotics, computer science, material science, biology, etc. After the introduction, the content is divided into three parts: Design of Soft Robots; Soft Materials; and Autonomous Soft Robots. Part I addresses soft mechanisms, biological mechanisms, and soft manipulation & locomotion. In Part II, the basics of polymer, biological materials, flexible & stretchable sensors, and soft actuators are discussed from a materials science standpoint. In turn, Part III focuses on modeling & control of continuum bodies, material intelligence, and information processing using soft body dynamics. In addition, the latest research results and cutting-edge research are highlighted throughout the book. Written by a team of researchers from highly diverse fields, the work offers a valuable textbook or technical guide for all students, engineers and researchers who are interested in soft robotics.

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