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TABLE 11.12 Load-Distribution Factors Km, Cm
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TABLE 11.13 Location of Geometry Factors Figure no. Gear type Straight bevel Spiral bevel Pressure angle, 20 25 20 20 20 25 20 20 20 19 19 19 221 2 221 2 221 2 Shaft angle, 90 90 90 90 90 90 60 120 90 E/D = 0.10 E/D = 0.15 E/D = 0.20 E/D = 0.10 E/D = 0.15 E/D = 0.20 Helix angle, 0 0 35 25 15 35 35 35 35 I Factor 11.19 11.21 11.23 11.25 11.27 11.29 11.31 11.33 11.35 11.37 11.39 11.41 11.43 11.45 11.47 J Factor 11.20 11.22 11.24 11.26 11.28 11.30 11.32 11.34 11.36 11.38 11.40 11.42 11.44 11.46 11.48
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Interpolation between charts may be necessary for both the I and J factors.
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11.6.3 Allowable Stresses The maximum allowable stresses are based on the properties of the material. They vary with the material, heat treatment, and surface treatment. Table 11.14 gives nominal values for allowable contact stress on gear teeth for commonly used gear materials and heat treatments. Table 11.15 gives nominal values for allowable bending stress in gear teeth for commonly used gear materials and heat treatments. Carburized case-hardened gears require a core hardness in the range of 260 to 350 HB (26 to 37 RC) and a total case depth in the range shown by Fig. 11.49. The calculated contact stress Sc times a safety factor should be less than the allowable contact stress Sac. The calculated bending stress St times a safety factor should be less than the allowable bending stress Sat.
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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 11.19 Geometry factor I for durability of straight-bevel gears with 20 pressure angle and 90 shaft angle.
FIGURE 11.20 Geometry factor J for strength of straight-bevel gears with 20 pressure angle and 90 shaft angle.
11.34 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 11.21 Geometry factor I for durability of straight-bevel gears with 25 pressure angle and 90 shaft angle.
FIGURE 11.22 Geometry factor J for strength of straight-bevel gears with 25 pressure angle and 90 shaft angle.
11.35 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 11.23 Geometry factor I for durability of spiral-bevel gears with 20 pressure angle, 35 spiral angle, and 90 shaft angle.
FIGURE 11.24 Geometry factor J for strength of spiral-bevel gears with 20 pressure angle, 35 spiral angle, and 90 shaft angle.
11.36 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 11.25 Geometry factor I for durability of spiral-bevel gears with 20 pressure angle, 25 spiral angle, and 90 shaft angle.
FIGURE 11.26 Geometry factor J for strength of spiral-bevel gears with 20 pressure angle, 25 spiral angle, and 90 shaft angle.
11.37 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.
BEVEL AND HYPOID GEARS
FIGURE 11.27 Geometry factor I for durability of spiral-bevel gears with 20 pressure angle, 15 spiral angle, and 90 shaft angle.
FIGURE 11.28 Geometry factor J for strength of spiral-bevel gears with 20 pressure angle, 15 spiral angle, and 90 shaft angle.
11.38 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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