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Kinematic Design of Machines and Mechanisms [Hardcover]

Homer D. Eckhardt (Author)


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Book Description

January 1, 1998 0070189536 978-0070189539 1
The First Complete and Practical Guide to the Integration, Design, and Analysis of Machines and their Motions.

Designed to improve the engineer's intuitive approach to machine design, this practical guide offers a clear understanding of the principles of the geometry of motion and the real-world connections between kinematic phenomena and the behavior of actual machines. It provides all of the information and graphical tools and techniques you'll need to select, visualize, integrate, and analyze machines and mechanisms for a wide range of applications. Building logically from the simplest, most easily visualized mechanisms and motions to the more complex, you'll get complete, well-illustrated coverage of: crank-sliders and inverted crank-sliders; pin-jointed and general four-bar linkages; multihoop linkages; gears and gear trains; quick-return mechanisms; cams. In addition, you'll find step-by-step procedures for designing mechanical systems to give prescribed motions--plus, proven methods for analyzing displacements, velocities, accelerations, force and torque relationships, and statically and dynamically balancing systems.

This unique reference is a must-reading for every engineer and designer who wants to fully exploit CAD's capabilities by minimizing the trail-and-error involved in searching for satisfactory machine design solutions.


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From the Back Cover

The First Complete and Practical Guide to the Integration, Design, and Analysis of Machines and their Motions. Designed to improve the enigneer's intuitive approach to machine design, this highly practical guide offers a clear understanding of the principles of the geometry of motion and the real-world connections between kinematic phenomena and the behavior of actual machines. It provides all of the information and graphical tools and techniques you'll need to select, visualize, integrate, and analyze machines and mechanisms for a wide range of applications. Building logically from the simplest, most easily visualized mechanisms and motions to the more complex, Kinematic Design of Machines and Mechanisms features complete, well-illustrated coverage of: Crank-sliders and inverted crank-sliders; Pin-jointed and general four-bar linkages; Multihoop linkages; Gears and gear trains; Quick-return mechanisms; Cams. In addition, you'll find step-by-step procedures for designing mechanical systems to give prescribed motions--plus, proven methods for analyzing displacements, velocities, accelerations, force and torque relationships, and statically and dynamically balancing systems. This unique reference is a must-reading for every engineer and designer who wants to fully exploit today's powerful CAD software by minimizing the trail-and-error involved in searching for satisfactory machine design solutions.

About the Author

Homer D. Eckhardt, P.E. received his B.S. and M.S. from M.I.T. He is a consulting engineer specializing in the design, analysis, synthesis, and debugging of automatic manufacturing machinery. He has more than 40 years of experience applying kinematics to the design of dynamic systems at such companies as Polaroid, Rockwell International, and R.C.A. Aerospace Systems. He has also taught courses on kinematics and machine design at Tufts University and the Worcester Polytechnic Institute. Mr. Eckhardt resides in Lincoln, Massachusetts.

Product Details

  • Hardcover: 620 pages
  • Publisher: McGraw-Hill Professional; 1 edition (January 1, 1998)
  • Language: English
  • ISBN-10: 0070189536
  • ISBN-13: 978-0070189539
  • Product Dimensions: 9.3 x 6.3 x 1.9 inches
  • Shipping Weight: 2.4 pounds
  • Amazon Best Sellers Rank: #3,065,093 in Books (See Top 100 in Books)

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Inside This Book (learn more)
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
grounded pivot, dyad synthesis, ith pulley, cognate linkage, graphical velocity analysis, oscillating linkage, output rocker, multiloop linkages, imbalance vector, loop closure equation, coupler pivots, maximum velocity ratio, only imaginary terms, function synthesis procedures, coupler point, moving centrode, coupler mass, grid reference line, translating roller follower, fixed centrode, oscillating roller follower, sine program, rocker length, linkage proportions, transmission angle
Key Phrases - Capitalized Phrases (CAPs): (learn more)
New York, Dover Publications, Maximum Velocity Ratio Figure, Output Link Length Ratio, Time Ratio Figure, Laurel Drive, Machine Design, Qualitative Approaches
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