Four-bar motion generation with elasticity constraints and optimization

Author:

Al-Smadi Y M1,Russell K2,Sodhi R S3

Affiliation:

1. AECOM, Special Structures Group, New York, USA

2. Armaments Engineering and Technology Center, US Army Research, Development and Engineering Center, Picatinny, New Jersey, USA

3. Department of Mechanical Engineering, New Jersey Institute of Technology, Newark, New Jersey, USA

Abstract

In conventional planar four-bar motion generation, all mechanism links are assumed rigid or non-deforming. Although the assumption of link rigidity in kinematic synthesis may be generally appropriate and often practiced, a statically loaded planar four-bar mechanism will undergo a degree of elastic deflection, particularly the crank and follower links. In this work, a non-linear optimization problem is formulated for planar four-bar motion generation that considers an applied coupler force and corresponding crank static torque, crank transverse deflection, and follower buckling. The output from the non-linear optimization problem – mechanism fixed and moving pivot loci – are input for a search algorithm that down selects a mechanism solution that satisfies transmission angle conditions, Grashof conditions, and a mechanism compactness condition. The final output of the presented method is planar four-bar motion generator that approximates prescribed coupler poses with satisfactory crank deflection and without follower buckling and also satisfies conditions for link rotatability, transmission angle and compactness.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Condensed Matter Physics

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Genetic Algorithm for Sensitivity Analysis of Automobile Hood Four-bar Mechanism Synthesis Using Motion Generation;International Journal of Automotive and Mechanical Engineering;2022-03-24

2. Developments in quantitative dimensional synthesis (1970-present): four-bar motion generation;Inverse Problems in Science and Engineering;2017-04-06

3. On Adjustable Planar Four-Bar Motion Generation With Order, Branch and Circuit Defect Rectification;Journal of Mechanisms and Robotics;2015-08-01

4. Planar Four-Bar Motion and Path Generation with Order and Branching Conditions;Journal of Advanced Mechanical Design, Systems, and Manufacturing;2011

5. On the synthesis of spatial revolute—revolute—spherical—cylindrical motion generators with prescribed coupler loads;Proceedings of the Institution of Mechanical Engineers, Part K: Journal of Multi-body Dynamics;2009-11-05

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