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24.19 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 24.13 Retaining rings. The IRR numbers are catalog numbers. See Table 24.17 for conversion to military standard numbers. (Industrial Retaining Ring Company.)
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FIGURE 24.14 Open-type E rings. (a) Flat; (b) bowed. (Industrial Retaining Ring Company.)
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FIGURE 24.15 Internal rings. (a) Flat type (see Fig. 24.13e for shape before assembly); (b) bowed type (see Fig. 24.13f for shape before assembly).
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24.20 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 24.16 External rings. (a) Flat; (b) bowed. (Industrial Retaining Ring Company.)
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FIGURE 24.17 (a) External C-ring; (b) self-locking external ring. (Industrial Retaining Ring Company.)
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UNTHREADED FASTENERS 24.22
FASTENING, JOINING, AND CONNECTING
TABLE 24.17 Conversion of IRR Catalog Numbers to Corresponding Military Standard Numbers of Retaining Rings
FIGURE 24.18 Spiral retaining rings. (a) Installation of ring into housing; (b) installation of ring onto shaft. (Smalley Steel Ring Company.)
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UNTHREADED FASTENERS 24.23
UNTHREADED FASTENERS
(c) (d)
FIGURE 24.19 (a) Square or rectangular key. (b) Square or rectangular key with one end rounded; also available with both ends rounded. (c) Square or rectangular key with gib head. (d) Woodruff key; also available with flattened bottom. (e) Tapered rectangular key; = hub length, h = height; taper is 1 8 in for 12 in or 1 for 100 for metric sizes. (f ) Tapered gib-head key; dimensions and taper same as in (e).
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UNTHREADED FASTENERS 24.24
FASTENING, JOINING, AND CONNECTING
TABLE 24.18 Dimensions for Standard Square- and Rectangular-Key Applications
TABLE 24.19 Dimensions for Standard Square- and Rectangular-Key Applications
A wave spring is a one-turn edge-wound spring washer also made from flat spring wire. A thrust load tends to flatten the spring, and hence such springs can be used to take up end play or to allow for expansion. Several of these can be used together, either crest-to-crest or nested, depending on the requirements for thrust loads or axial motion.
24.5 KEYS
All standard plain, tapered, and Woodruff keys are illustrated in Fig. 24.19. These are usually made with edges broken, but they may be chamfered if fillets are used in the
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UNTHREADED FASTENERS 24.25
UNTHREADED FASTENERS
TABLE 24.20 Dimensions for Woodruff-Key Applications (Fig. 24.19d)
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UNTHREADED FASTENERS 24.26
FASTENING, JOINING, AND CONNECTING
TABLE 24.20 Dimensions for Woodruff-Key Applications (Fig. 24.19d) (Continued)
keyseats. Standard sizes and keyseat dimensions needed for design are given in Tables 24.18 to 24.20.
24.6 WASHERS
Plain washers, shown in Fig. 24.20a, are flat and circular and are used on bolts and screws. They are applied under the nut, under the head, or both. Plain washers can also be made square or triangular and are sometimes beveled for use on an inclined surface. Cylindrically curved or bent washers, shown in Fig. 24.20b, are useful in certain applications as a means of obtaining additional bolt tension in the joint. Conical or Belleville washers, shown in Fig. 24.20c and d, are springs and are useful for heavy loads with small deflections and where a nonlinear force-deflection relation is desired. See Chap. 6 for more details. Spring washers, shown in Fig. 24.20e and f, are hardened circular washers that are split and then bent out of a flat plane. They are sometimes called lock washers, although their principal purpose is to take up for relaxing bolt tension or looseness in the joint. Wood-grip washers, shown in Fig. 24.21a, are useful on soft materials, such as wood. When the joint is tightened, the bent-over end penetrates and grips the mating material. Horseshoe or C-washers are useful where it is desirable to remove the washer without unbolting the connection (see Fig. 24.21b).
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