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FIGURE 22.18 Flowchart describing a computer program which could be used to design nongasketed joints loaded in tension. Chart continues on next page.
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Downloaded from Digital Engineering Library @ McGraw-Hill (www.digitalengineeringlibrary.com) Copyright 2004 The McGraw-Hill Companies. All rights reserved. Any use is subject to the Terms of Use as given at the website.
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FIGURE 22.18 (Continued)
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22.1 Joseph E. Shigley and Charles R. Mischke, Mechanical Engineering Design, 5th ed., McGraw-Hill Book Company, New York, 1989. 22.2 Goeffrey L. Kulak, John W. Fisher, and John H. A. Struik, Guide to Design Criteria for Bolted and Riveted Joints, 2d ed., John Wiley & Sons, New York, 1987. 22.3 Archie Higdon, Edward H. Ohlsen, William B. Stiles, John A. Weese, and William F. Riley, Mechanics of Materials, 3d ed., John Wiley & Sons, New York, 1978.
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Downloaded from Digital Engineering Library @ McGraw-Hill (www.digitalengineeringlibrary.com) Copyright 2004 The McGraw-Hill Companies. All rights reserved. Any use is subject to the Terms of Use as given at the website.
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22.4 ANSI Specification B1.1-1974, Screw Threads, American Society of Mechanical Engineers, New York, 1974, p. 80. 22.5 Specifications BS 3643: Part 2: 1981, ISO Metric Screw Threads, British Standards Institute, London, 1981, p. 10. 22.6 John H. Bickford, An Introduction to the Design and Behavior of Bolted Joints, 2d ed., Marcel Dekker, New York, 1990, p. 106. 22.7 Nabil Motosh, Determination of Joint Stiffness in Bolted Connections, Trans. ASME, August 1976, p. 859. 22.8 G. H. Junker, Principle of the Calculation of High Duty Bolted Joints: Interpretation of VDI Directive 2230, Unbrako Technical Thesis, SPS, Jenkintown, Pa., 1974, p. 8. 22.9 Carl C. Osgood, Fatigue Design, Wiley-Interscience, New York, 1970, p. 196. 22.10 Joseph Viglione, Nut Design Factors for Long Life, Machine Design, August 1965, p. 138. 22.11 Degradation of Threaded Fasteners in the Reactor Coolant Pressure Boundary of PWR Plants, U.S. Nuclear Regulatory Commission, Washington, D.C., June 1982, p. 2. 22.12 Edwin Rodkey, Making Fastened Joints Reliable Ways to Keep em Tight, Assembly Engineering, March 1977, pp. 24 27. 22.13 Thread Forms and Torque Systems Boost Reliability of Bolted Joints, Product Engineering, December 1977, p. 38.
Downloaded from Digital Engineering Library @ McGraw-Hill (www.digitalengineeringlibrary.com) Copyright 2004 The McGraw-Hill Companies. All rights reserved. Any use is subject to the Terms of Use as given at the website.
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Downloaded from Digital Engineering Library @ McGraw-Hill (www.digitalengineeringlibrary.com) Copyright 2004 The McGraw-Hill Companies. All rights reserved. Any use is subject to the Terms of Use as given at the website.
Source: STANDARD HANDBOOK OF MACHINE DESIGN
THREADED FASTENERS
Joseph E. Shigley
Professor Emeritus The University of Michigan Ann Arbor, Michigan
23.1 SCREW THREADS / 23.1 23.2 BOLTS / 23.5 23.3 SCREWS / 23.11 23.4 NUTS / 23.28 23.5 TAPPING SCREWS / 23.35 REFERENCE / 23.38
This chapter is intended to cover the description, uses, materials, and sizes of threaded fasteners. The amount of data available concerning this subject is extremely large, so the intent here is to provide the information necessary for the usual machine-design task of selecting such fasteners. The data contained in this chapter have been compiled in part from the standards listed in Ref. [23.1].
23.1 SCREW THREADS
Standard screw threads consist of the Unified inch series and the metric series. Two profiles have been standardized in the metric series; these are called the M and MJ profiles. Figure 23.1 shows that both the Unified and metric M threads utilize the same profile. The metric MJ profile has a rounded fillet at the root of the external thread and a larger minor diameter of both the internal and external threads.This profile is used for applications requiring a high fatigue strength and is also employed in aerospace applications. The Unified-series profile, shown in Fig. 23.1, is designated as UN. Another unified profile, designated as UNR, has a rounded root on the external thread. Unified thread standards are based on the nominal size (major diameter) and the number of threads per inch. The three standards coarse (UNC), fine (UNF), and extra fine (UNEF) are listed in Table 23.1 and are called the standard series. Typical specifications would be written
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