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Topology Optimization of Compliant Mechanisms - 9789811304316

Description: Topology Optimization of Compliant Mechanisms Please note: this item is printed on demand and will take extra time before it can be dispatched to you (up to 20 working days). Author(s): Xianmin Zhang, Benliang Zhu Format: Hardback Publisher: Springer Verlag, Singapore, Singapore Imprint: Springer Verlag, Singapore ISBN-13: 9789811304316, 978-9811304316 Synopsis This book covers various topics regarding the design of compliant mechanisms using topology optimization that have attracted a great deal of attention in recent decades. After comprehensively describing state-of-the-art methods for designing compliant mechanisms, it provides a new topology optimization method for finding new flexure hinges. It then presents several attempts to obtain distributed compliant mechanisms using the topology optimization method. Further, it discusses a Jacobian-based topology optimization method for compliant parallel mechanisms, and introduces readers to the topology optimization of compliant mechanisms, taking into account geometrical nonlinearity and reliability. Providing a systematic method for topology optimization of flexure hinges, which are essential for designing compliant mechanisms, the book offers a valuable resource for all readers who are interested in designing compliant mechanism-based positioning stages. In addition, the methods for solving the de facto hinges in topology optimized compliant mechanisms will benefit all engineers seeking to design micro-electro-mechanical system (MEMS) structures.

Price: 96.09 GBP

Location: Aldershot

End Time: 2024-10-26T07:54:23.000Z

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Topology Optimization of Compliant Mechanisms - 9789811304316

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Book Title: Topology Optimization of Compliant Mechanisms

Number of Pages: 192 Pages

Language: English

Publication Name: Topology Optimization of Compliant Mechanisms

Publisher: Springer Verlag, Singapore

Publication Year: 2018

Subject: Engineering & Technology, Mathematics

Item Height: 235 mm

Item Weight: 483 g

Type: Textbook

Author: Benliang Zhu, Xianmin Zhang

Subject Area: Mechanical Engineering

Item Width: 155 mm

Format: Hardcover

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