Atlas of the Four-Bar Linkage

Atlas of the Four-Bar Linkage
Author: Philip Todd
Publisher: Saltire Software, Incorporated
Total Pages: 534
Release: 2014-08-08
Genre: Technology & Engineering
ISBN: 9781882564293

For many years, the coupler-curve atlas by Hrones and Nelson has been a valuable aid for designing four-bar linkages. Today, computers can quickly and accurately analyze displacement, velocity, and acceleration of the coupler point which traces the curve. However, even in the age of computers, an atlas is unsurpassed as a way to see relationships among these curves and choose the best for a particular design by thumbing through paper copies rather than looking at them individually or even in small groups on a computer screen. This atlas of four-bar linkage coupler-curves facilitates quick visual comparisons. The atlas aids conceptual design by allowing easy perusal of a large number of curves produced by the following linkage categories: Crank Rocker, Double Crank, Crank Slider and Inverted Crank Slider. When an acceptable design is found, the curve can be analyzed and the linkage parameters varied to improve performance by using the appropriate computer software.

Machines, Mechanism and Robotics

Machines, Mechanism and Robotics
Author: Rajeev Kumar
Publisher: Springer Nature
Total Pages: 1830
Release: 2021-07-21
Genre: Technology & Engineering
ISBN: 9811605505

This volume includes select papers presented during the 4th International and 19th National Conference on Machines and Mechanism (iNaCoMM 2019), held in Indian Institute of Technology, Mandi. It presents research on various aspects of design and analysis of machines and mechanisms by academic and industry researchers.

Advances in Mechanism and Machine Science

Advances in Mechanism and Machine Science
Author: Tadeusz Uhl
Publisher: Springer
Total Pages: 4248
Release: 2019-06-13
Genre: Technology & Engineering
ISBN: 3030201317

This book gathers the proceedings of the 15th IFToMM World Congress, which was held in Krakow, Poland, from June 30 to July 4, 2019. Having been organized every four years since 1965, the Congress represents the world’s largest scientific event on mechanism and machine science (MMS). The contributions cover an extremely diverse range of topics, including biomechanical engineering, computational kinematics, design methodologies, dynamics of machinery, multibody dynamics, gearing and transmissions, history of MMS, linkage and mechanical controls, robotics and mechatronics, micro-mechanisms, reliability of machines and mechanisms, rotor dynamics, standardization of terminology, sustainable energy systems, transportation machinery, tribology and vibration. Selected by means of a rigorous international peer-review process, they highlight numerous exciting advances and ideas that will spur novel research directions and foster new multidisciplinary collaborations.

Geometric Design of Linkages

Geometric Design of Linkages
Author: J. Michael McCarthy
Publisher: Springer Science & Business Media
Total Pages: 466
Release: 2010-11-11
Genre: Science
ISBN: 1441978925

This book is an introduction to the mathematical theory of design for articulated mechanical systems known as linkages. The focus is on sizing mechanical constraints that guide the movement of a work piece, or end-effector, of the system. The function of the device is prescribed as a set of positions to be reachable by the end-effector; and the mechanical constraints are formed by joints that limit relative movement. The goal is to find all the devices that can achieve a specific task. Formulated in this way the design problem is purely geometric in character. Robot manipulators, walking machines, and mechanical hands are examples of articulated mechanical systems that rely on simple mechanical constraints to provide a complex workspace for the end- effector. The principles presented in this book form the foundation for a design theory for these devices. The emphasis, however, is on articulated systems with fewer degrees of freedom than that of the typical robotic system, and therefore, less complexity. This book will be useful to mathematics, engineering and computer science departments teaching courses on mathematical modeling of robotics and other articulated mechanical systems. This new edition includes research results of the past decade on the synthesis of multi loop planar and spherical linkages, and the use of homotopy methods and Clifford algebras in the synthesis of spatial serial chains. One new chapter on the synthesis of spatial serial chains introduces numerical homotopy and the linear product decomposition of polynomial systems. The second new chapter introduces the Clifford algebra formulation of the kinematics equations of serial chain robots. Examples are use throughout to demonstrate the theory.

Design of Special Planar Linkages

Design of Special Planar Linkages
Author: Jingshan Zhao
Publisher: Springer Science & Business Media
Total Pages: 302
Release: 2013-08-31
Genre: Technology & Engineering
ISBN: 364238448X

Planar linkages play a very important role in mechanical engineering. As the simplest closed chain mechanisms, planar four-bar linkages are widely used in mechanical engineering, civil engineering and aerospace engineering. Design of Special Planar Linkages proposes a uniform design theory for planar four-bar linkages. The merit of the method proposed in this book is that it allows engineers to directly obtain accurate results when there are such solutions for the specified n precise positions; otherwise, the best approximate solutions will be found. This book discusses the kinematics and reachable workspace and singularity of a planar 3-RRR linkage, which can be used to analyze other planar linkages. Then a foldable stair that retains the walking conversions of human beings and all the merits of a concrete stair in civil engineering is described along with a lifting guidance mechanism that has the advantages of high strength, high rigidity, lightweight overconstraint trusses and motion flexibility. The method proposed in this book can be applied to other planar linkages. This book offers a valuable resource for scientists, researchers, engineers, graduate students in mechanical engineering especially those interested in engineering design, robotics and automation. Jingshan Zhao, Associate professor; Zhijing Feng and Fulei Chu, professor; Ning Ma, Dr., all work at the Department of Mechanical Engineering, Tsinghua University.

Introduction to Mechanism Design

Introduction to Mechanism Design
Author: Eric Constans
Publisher: CRC Press
Total Pages: 760
Release: 2018-07-20
Genre: Technology & Engineering
ISBN: 1351727621

Introduction to Mechanism Design: with Computer Applications provides an updated approach to undergraduate Mechanism Design and Kinematics courses/modules for engineering students. The use of web-based simulations, solid modeling, and software such as MATLAB and Excel is employed to link the design process with the latest software tools for the design and analysis of mechanisms and machines. While a mechanical engineer might brainstorm with a pencil and sketch pad, the final result is developed and communicated through CAD and computational visualizations. This modern approach to mechanical design processes has not been fully integrated in most books, as it is in this new text.

New Trends in Mechanism and Machine Science

New Trends in Mechanism and Machine Science
Author: Philippe Wenger
Publisher: Springer
Total Pages: 579
Release: 2016-09-03
Genre: Technology & Engineering
ISBN: 3319441566

This book collects the most recent advances in mechanism science and machine theory with application to engineering. It contains selected peer-reviewed papers of the sixth International Conference on Mechanism Science, held in Nantes, France, 20-23 September 2016, covering topics on mechanism design and synthesis, mechanics of robots, mechanism analysis, parallel manipulators, tensegrity mechanisms, cable mechanisms, control issues in mechanical systems, history of mechanisms, mechanisms for biomechanics and surgery and industrial and nonindustrial applications.

Design and Analysis of Mechanisms

Design and Analysis of Mechanisms
Author: Michael J. Rider
Publisher: John Wiley & Sons
Total Pages: 331
Release: 2015-07-07
Genre: Technology & Engineering
ISBN: 1119054338

A planar or two-dimensional (2D) mechanism is the combination of two or more machine elements that are designed to convey a force or motion across parallel planes. For any mechanical engineer, young or old, an understanding of planar mechanism design is fundamental. Mechanical components and complex machines, such as engines or robots, are often designed and conceptualised in 2D before being extended into 3D. Designed to encourage a clear understanding of the nature and design of planar mechanisms, this book favours a frank and straightforward approach to teaching the basics of planar mechanism design and the theory of machines with fully worked examples throughout. Key Features: Provides simple instruction in the design and analysis of planar mechanisms, enabling the student to easily navigate the text and find the desired material Covers topics of fundamental importance to mechanical engineering, from planar mechanism kinematics, 2D linkage analyses and 2D linkage design to the fundamentals of spur gears and cam design Shows numerous example solutions using EES (Engineering Equation Solver) and MATLAB software, with appendices dedicated to explaining the use of both computer tools Follows end-of-chapter problems with clearly detailed solutions