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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.
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.
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Intelligent Robotics and Applications - 7th International Conference, ICIRA 2014, Guangzhou, China, December 17-20, 2014, Proceedings, Part I (Paperback, 2014 ed.)
Xianmin Zhang, Honghai Liu, Zhong Chen, Nianfeng Wang
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R3,065
Discovery Miles 30 650
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Ships in 10 - 15 working days
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This two volume set LNAI 8917 and 8918 constitutes the refereed
proceedings of the 7th International Conference on Intelligent
Robotics and Applications, ICIRA 2014, held in Guangzhou, China, in
December 2014. The 109 revised full papers presented were carefully
reviewed and selected from 159 submissions. The papers aim at
enhancing the sharing of individual experiences and expertise in
intelligent robotics with particular emphasis on technical
challenges associated with varied applications such as biomedical
applications, industrial automations, surveillance, and sustainable
mobility.
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Intelligent Robotics and Applications - 7th International Conference, ICIRA 2014, Guangzhou, China, December 17-20, 2014, Proceedings, Part II (Paperback, 2014 ed.)
Xianmin Zhang, Honghai Liu, Zhong Chen, Nianfeng Wang
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R3,324
Discovery Miles 33 240
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Ships in 10 - 15 working days
|
This two volume set LNAI 8917 and 8918 constitutes the refereed
proceedings of the 7th International Conference on Intelligent
Robotics and Applications, ICIRA 2014, held in Guangzhou, China, in
December 2014. The 109 revised full papers presented were carefully
reviewed and selected from 159 submissions. The papers aim at
enhancing the sharing of individual experiences and expertise in
intelligent robotics with particular emphasis on technical
challenges associated with varied applications such as biomedical
applications, industrial automations, surveillance, and sustainable
mobility.
|
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