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Compliant mechanisms / Larry L. Howell.

By: Material type: TextTextPublication details: New York : Wiley, c2001.Description: xvii, 459 p. : ill. ; 24 cmISBN:
  • 047138478X
Subject(s): DDC classification:
  • 621.811 21 HOW
LOC classification:
  • TJ181 .H89 2001
Online resources:
Contents:
Introduction Flexibility and Deflection Failure Prevention Rigid-Link Mechanism Pseudo-Rigid-Body Model Force-Deflection Relationships Numerical Methods Complaint Mechanism Synthesis Optimal Synthesis with continuum models Special-purpose Mechanism Bistable Mechanisms
Summary: Compliant mechanisms gain their motion from the deflection of flexible members rather than from traditional bearings and hinges. Advantages of compliant mechanisms include high precision, low cost, and ease of miniaturization. Compliant mechanisms should be designed to avoid fatigue failure and their design is often complicated by nonlinearities. One concept that makes compliant mechanism design possible is that it is possible for something to be both flexible and strong. The selection of material properties, geometry, and boundary conditions are key elements of compliant mechanism design.
List(s) this item appears in: New Arrivals December 2021
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Item type Current library Collection Call number Status Date due Barcode
Books Books IIITDM Kurnool General Stacks Non-fiction 621.811 HOW (Browse shelf(Opens below)) Available 0004054
Books Books IIITDM Kurnool General Stacks Non-fiction 621.811 HOW (Browse shelf(Opens below)) Available 0004055
Books Books IIITDM Kurnool General Stacks Non-fiction 621.811 HOW (Browse shelf(Opens below)) Available 0004056
Reference Reference IIITDM Kurnool Reference Reference 621.811 HOW (Browse shelf(Opens below)) Reference 0004057

"A Wiley-Interscience publication."

Introduction Flexibility and Deflection Failure Prevention Rigid-Link Mechanism Pseudo-Rigid-Body Model Force-Deflection Relationships Numerical Methods Complaint Mechanism Synthesis Optimal Synthesis with continuum models Special-purpose Mechanism Bistable Mechanisms

Compliant mechanisms gain their motion from the deflection of flexible members rather than from traditional bearings and hinges. Advantages of compliant mechanisms include high precision, low cost, and ease of miniaturization. Compliant mechanisms should be designed to avoid fatigue failure and their design is often complicated by nonlinearities. One concept that makes compliant mechanism design possible is that it is possible for something to be both flexible and strong. The selection of material properties, geometry, and boundary conditions are key elements of compliant mechanism design.

Includes bibliographical references and index.

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