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Known as the professionals' bible, Standard Handbook of Machine Design puts the formulas, solutions, and reference material engineers need at their fingertips. Definitive and comprehensive, this superlative reference provides:
* Two new chapters on the evolution of a successful machine design and pressure cylinders
* Classic computational methods
* Current codes and standards
* Comprehensive design solutions for topics such as Cams, Gears, Springs, Clutches, Brakes, and Bolted and Welded connections
* A thesaurus of mechanisms
* Tables, standards, and code data
* Reorganization for quick look-up of information
THE LATEST IDEAS IN MACHINE DESIGN AND ANALYSIS
• Standards, Codes, Regulations • Computational Considerations • Wear • Solid Materials • Strength of Cold-Worked & Heat-Treated Steels • Strength Under Static Circumstances • Welded Connection • Instabilities in Beams and Columns • Curved Beams and Rings • Seals • Flywheels Fits & Tolerances• Power Screws • Threaded Fasteners • Unthreaded Fasteners • Bolted & Riveted Joints • Springs • Lubrication • Gaskets • Rolling-Contact Bearings • Journal Bearings • Couplings • Structural Plastics & Adhesives • Clutches & Brakes • Belt Drives • Chain Drives • Spur Gears • Bevel and Hypoid Gears • Helical Gears • Worm Gearing • Shafts • Vibration & Control of Vibration • A Thesaurus of Mechanisms • Cam Mechanisms • Linkages • Load-Cycle Analysis • Corrosion • Gear Trains • Sections & Shapes • Tabular Data • Stress • Deflection •
Charles R. Mischke, Ph.D., is Professor Emeritus of Mechanical Engineering, Iowa State University, Ames, Iowa. He has authored many technical papers on designing to a reliability specification, computer-aided design, and design morphology. His was Coeditor-in-Chief, with J.E. Shigley, of the Standard Handbook of Machine Design, First and Second Editions.
Thomas Hunter Brown, Jr., Ph.D., PE, is Professor of Mechanical Engineering at North Carolina State University. He currently manages both the FE review program and the Civil Engineering PE Review Program at the University's Institute for Transportation Research and Education (ITRE), in addition to fulfilling his course development and teaching responsibilities. Brown also teaches review courses for the Mechanical Engineering PE Review Program offered by the University and a private professional development firm. Prior to coming to NC State, Dr. Brown worked as a mechanical engineer for Scientific-Atlanta, Inc., Fluor Daniel Construction, and Burlington Industries, where he specialized in stress analysis and machine design.
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Most Helpful Customer Reviews
17 of 17 people found the following review helpful:
4.0 out of 5 stars
Excellent Reference for a Machine Designer,
By Chad Miars (Peoria, IL) - See all my reviews
This review is from: Standard Handbook of Machine Design (Hardcover)
This text is an excellent reference for any design engineer working in the machinery field. It fills in where the Machinery's Handbook falls short. The text is basically (I am oversimplifying) an expanded version of the Shigley McGraw-Hill Machine Design Textbook. My only complaint is that the discussion on the strength of welded joints is missing.
19 of 20 people found the following review helpful:
3.0 out of 5 stars
thorough and outdated,
By
This review is from: Standard Handbook of Machine Design (Hardcover)
I own both Shigley's books on Machine Design, Mechanical Engineering Design (which I would rate 5/5) and this handbook. I find this handbook is very extensive in the topics it covers, just about everything pertaining to Machine Design, but fails to elaborate in many of the key areas. Furthermore, many formulas are presented, but there are not enough examples on their use. My greatest complaint though, has to do with the print, it seems as if I had in my hand a book written out in the 60s. Drawing are dirty and unclear in many situations, tables seem as if they were cutout from another book and pasted here, then photocopied (the first drawing in the book, a man, seems as if it was photocopied on a lousy photocopier from an old newspaper), and the typeface in the graphs is plainly outdated. I understand late J. Shigley is no longer among us, but Mischke should modernize the quality of presentation when deciding to launch new editions. Overall, I recommend Rothbart's handbook over this one.
6 of 9 people found the following review helpful:
5.0 out of 5 stars
Useful reference,
By
This review is from: Standard Handbook of Machine Design (Hardcover)
Standard Handbook of Machine Design, 3rd Edition edited by Joseph Shigley, Charles Mischke, Thomas H. Brown (Standard Handbook of Machine Design: McGraw-Hill Professional) The definitive machine design handbook for mechanical engineers, product designers, project engineers, design engineers, and manufacturing engineers covers every aspect of machine construction and operation. The 3rd edition of the Standard Handbook of Machine Design will be redesigned to meet the challenges of a new mechanical engineering age. In addition to adding chapters on structural plastics and adhesives, which are replacing the old nuts bolts and fasteners in design, the author will also update and streamline the remaining chapters.
Excerpt: This Third Edition of the Standard Handbook of Machine Design has been completely reorganized as compared to its two previous editions. To bring into focus the needs of the machine design engineer, without the distractions of ancillary material, the number of chapters has been reduced from 50 in the Second Edition to 39. These 39 chapters have been carefully grouped into nine distinct sections, denoted as Parts 1 through 9. These chapter groupings were inspired primarily by a set of eight "Machine Design Workbooks," containing much of the material in the First Edition, and published between the First and Second Editions. After a new introductory chapter, "Evolution of a Successful Design," the first of nine sections, Part 1, "Machine Elements in Motion," presents four chapters on the seemingly endless ways to achieve a desired motion. Kinematics, or the geometry of motion, is probably the most important step in the design process, as it sets the stage for many of the other decisions that will be made as a successful design evolves. Whether it's a self-locking latch you are looking for, a complex cam shape, or an entire gear assembly, the information you need is here in these chapters. Part 2, "Machine Elements that Absorb and Store Energy," contains three chapters presenting the classic machine elements: springs, flywheels, clutches, and brakes. Not all designs will have a need for these energy-related devices, but, when appropriate, no other device will do the job. Part 3, "Gearing," contains five chapters covering every possible gear type, from basic spur gears to complex hypoid bevel gears sets; the intricacies of worm gearing; and the very versatile and relatively modern power screw designs. Part 4, "Power Transmission," contains four chapters directed at the requirements of transferring motion from one rotating axis to another, whether by time-honored belt or chain configurations, or the wide variety of couplings used to isolate and protect downstream machine elements. This is also where the design of shafts, from both a static and dynamic viewpoint, is included. Part 5, "Bearings and Lubrication," pulls together in one place the design of many types of roller bearings as well as the design aspects of the classic journal bearing. Bearings could not do their job without lubrication, and lubrication would be lost from most bearings without the proper seals. Traditional and nontraditional designs are presented. Part 6, "Fastening, Joining, and Connecting," covers every conceivable type of mechanical fastener. When disassembly is not required, or when maximum strength is needed, then the only solution is a welded connection. All aspects of a welded connection are presented. Many connections must prevent leakage or provide cushioning, so a discussion of seals and their effect on a bolted connection is provided. The mating of parts without prior preassembly can be an important design requirement; therefore, this is where a detailed discussion of fits and tolerances is included. Part 7, "Load Capability Considerations," provides the designer with the rules for determining if a particular part will fail. This determination does not have to be a precise calculation, either under static or dynamic conditions, whether the part is acting as a beam or column, but to ignore these fundamental principles is to invite disaster. This section seemed like the best place to discuss vibration and, just as important, its control. Part 8, "Performance of Engineering Materials," brings to bear the science of material behavior, to include the changes that take place during the manufacturing process. Once in service, machine elements are subject to constant wear and the adverse effects of corrosion. Lastly, Part 9, "Classical Stress and Deformation Analysis," provides the design engineer with the fundamental formulas for stress, deflection, and deformation, and includes special geometries such as curved elements and special loadings, which are found in cylinders under internal pressure when parts are press fitted. One of the chapters included in the First and Second Editions, "Sections and Shapes-Tabular Data," has been provided in this Third Edition as an appendix.
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