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Design and Analysis of Mechanisms: A Planar Approach by Michael J. Rider Book Details
Book Name | Design and Analysis of Mechanisms: A Planar Approach |
Author | Michael J. Rider |
Category | Mechanical Engineering Books, Education Books |
Book Language | English |
Pages | 319 |
Country | India |
Book Size | 6 MB |
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About Design and Analysis of Mechanisms: A Planar Approach by Michael J. Rider Book
Design and Analysis of Mechanisms: A Planar Approach is likely a reference to a textbook or course that focuses on the design and analysis of mechanical systems, particularly mechanisms, in a two-dimensional (planar) context. Mechanisms are combinations of rigid bodies connected by joints and links that enable the transmission of motion and force.
In a planar approach, the focus is on analyzing and designing mechanisms that move and operate primarily in a single plane, which simplifies the analysis compared to three-dimensional mechanisms. The book or course might cover topics such as:
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Kinematics: Kinematics deals with the motion of bodies without considering the forces that cause the motion. In the context of mechanisms, this involves analyzing the relationships between position, velocity, and acceleration of different parts of the mechanism as it moves.
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Types of Joints and Mechanisms: The book might cover various types of joints (like revolute, prismatic, etc.) and mechanisms (like four-bar linkages, slider-crank mechanisms, etc.), which are fundamental building blocks in mechanical systems.
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Graphical and Analytical Methods: Students or readers might learn how to use graphical methods, such as velocity and acceleration diagrams, to analyze the motion of mechanisms. Analytical methods could involve equations derived from geometry and algebra.
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Mechanism Synthesis: This refers to the process of designing a mechanism to achieve a specific set of desired motions. It involves determining the appropriate lengths and locations of links and joints.
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Grashof's Criterion: Grashof's Criterion is a concept used to determine whether a four-bar linkage can achieve continuous rotation or not, based on the lengths of its links.
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Mechanism Dynamics: While the focus might be on kinematics, the course or book might also touch upon dynamic analysis, considering forces, torques, and the resulting motion.
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Applications: Practical examples of mechanisms found in real-world devices, such as engines, machines, and tools, could be discussed to illustrate the concepts taught.
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Computer-Aided Analysis: With advancements in technology, there might be sections on using computer-aided tools for mechanism analysis and design.
This topic is of significance in engineering fields like mechanical engineering, robotics, and industrial design. A planar approach is useful for simplifying analysis and understanding the basic principles of mechanisms before delving into more complex three-dimensional systems. If you're studying this subject, it's likely that the book or course will provide you with the foundational knowledge needed to design and analyze mechanisms in a planar context.
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