scispace - formally typeset
Journal ArticleDOI

Design of compliant straight-line mechanisms using flexural joints

Reads0
Chats0
TLDR
In this paper, an approach to design large-displacement straight-line flexural mechanisms with rotational flexural joints is proposed, which is based on a viewpoint that the straightline motion is regarded as a compromise of rigid and compliant parasitic motion of a rotational joint.
Abstract
Straight-line compliant mechanisms are important building blocks to design a linear-motion stage, which is very useful in precision applications. However, only a few configurations of straight-line compliant mechanisms are applicable. To construct more kinds of them, an approach to design large-displacement straight-line flexural mechanisms with rotational flexural joints is proposed, which is based on a viewpoint that the straight-line motion is regarded as a compromise of rigid and compliant parasitic motion of a rotational flexural joint. An analytical design method based on the Taylor series expansion is proposed to quickly obtain an approximate solution. To illustrate and verify the proposed method, two kinds of flexural joints, cross-axis hinge and leaf-type isosceles-trapezoidal flexural(LITF) pivot are used to reconstruct straight-line flexural mechanisms. Their performances are obtained by analytic and FEA method respectively. The comparisons of the results show the accuracy of the approach. Both examples show that the proposed approach can convert a large-deflection flexural joint into approximate straight-line mechanism with a high linearity that is higher than 5 000 within 5 mm displacement. This can lead to a new way to design, analyze or optimize straight-line flexure mechanisms.

read more

Citations
More filters

Flexures Elements Of Elastic Mechanisms

Leonie Kohl
TL;DR: The flexures elements of elastic mechanisms is universally compatible with any devices to read and is available in the book collection an online access to it is set as public so you can get it instantly.
Journal ArticleDOI

Modeling and analysis of conical-shaped notch flexure hinges based on NURBS

TL;DR: In this article, an analytical compliance matrix model of a flexure hinge is established and the conical-shaped notch Flexure Hips is parameterized using the non-uniform rational B-spline (NURBS) curve, which can be used to describe several different conical notch shapes.
Journal ArticleDOI

Conceptual design of compliant translational joints for high-precision applications

TL;DR: In this paper, the conceptual design of compliant translational joints (CTJ) via three approaches: parallelogram based method, straight-line motion mechanism based method and combination based method.
Journal ArticleDOI

A generalized analytical compliance model for cartwheel flexure hinges.

TL;DR: A novel generalized cartwheel flexure hinge is proposed by modifying spring number and varying the angle between two springs on the basis of the NCFH to achieve improved performance compared to NCFH with optimized GCFH parameters.
Journal ArticleDOI

Modeling and design of a two-axis elliptical notch flexure hinge.

TL;DR: A new mechanical structure of TENFH was designed based on the compliance model and stress model proposed in this paper, which meets the requirements of the system.
References
More filters
Book

Precision Machine Design

TL;DR: This book is a comprehensive engineering exploration of all the aspects of precision machine design - both component and system design considerations for precision machines providing many real-world design case studies as well as numerous examples of existing components and their characteristics.
Book

Flexures: Elements of Elastic Mechanisms

TL;DR: Flexure Design: Advantages and Disadvantages of Flexures as discussed by the authors The main advantages and disadvantages of flexible design are: Basic Elasticity. Fatigue. Vibrations and Natural Frequencies of Continuous Systems.
Journal ArticleDOI

Design of large-displacement compliant joints

TL;DR: In this article, the drawbacks of typical flexure connectors are investigated and cataloged, and several new designs for highly effective, kinematically-behaved compliant joints are proposed.
Journal ArticleDOI

Characteristics of Beam-Based Flexure Modules

TL;DR: In this paper, a general analytical framework is developed that enables a designer to parametrically predict the performance characteristics such as mobility, overconstraint, stiffness variation, and error motions, of beam-based flexure mechanisms without resorting to tedious numerical or computational methods.
Journal ArticleDOI

Synthesis of multi-degree of freedom, parallel flexure system concepts via freedom and constraint topology (FACT). Part II: Practice

TL;DR: In this paper, the authors demonstrate how to use freedom and constraint topology (FACT) to synthesize concepts for the multi-degree of freedom, parallel precision flexure systems that fall within the scope of Part I.
Related Papers (5)