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FIGURE 16.46 Drawing of a model of Centaloc spline profile distortion obtained by photoelastic methods showing lines of constant stress. (Lovejoy, Inc.)
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method of attachment allows a much greater clamping force to be exerted than with a split-taper hub with internal spline. This clamping about the entire spline is important and eliminates fretting corrosion (caused by loose-fitting spline shafts and mating hubs) and point contact obtained with split bushing types, as shown in Fig. 16.46. Pressure bushings (Fig. 16.45) are similar to the hydraulic coupling except that both the inner and outer surfaces are allowed to deform, compressing onto the shaft and expanding into the coupling hub. The pressure source for this type is usually applied through axial compression of the bladder with a clamping ring.
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16.1 AGMA Standard 922-A96 Load Classification and Service Factors for Flexible Couplings. 16.2 DIN 740, Flexible (Shaft) Couplings; Dimensions, Nominal Torque. 16.3 AGMA Standard 9000-C90, Flexible Couplings Potential Unbalance Classification. 16.4 ISO 1940, Balance Quality of Rotating Rigid Bodies. 2003. 16.5 Handbook of Molded and Extruded Rubber, Goodyear Tire and Rubber Co., Akron, Ohio, 1969.
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COUPLINGS 16.34 16.6 16.7 16.8 16.9 16.10 16.11 16.12 16.13 16.14 16.15
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SAE, Universal Joint and Drive Shaft Design Manual AE-7, 1979. AGMA Standard 9002-A86, Bore and Keyway Sizes for Flexible Couplings. SAE J744c, Hydraulic Power Pumps, 1970. ISO R773, Rectangular or Square Parallel Keys and Their Corresponding Keyways, 1969. DIN 7154, ISO-Close Tolerance Standard Bores. JISB 1301, Bore and Keyway Tolerances. ANSI B92.1, Involute Splines and Inspection. DIN 5482, Internal and External Involute Spline Profiles. DIN 5480, Serrated Shaft Connections with Involute Spline Profiles. SAE J499a, Parallel Side Splines for Soft Broached Holes in Fittings, 1975.
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BIBLIOGRAPHY
Beercheck, Richard: The Right Flexible Coupling, Machine Design, Aug. 24, 1978, pp. 101 104. Bigden, J. V., and Ziegler, Carl: Universal Joints, Power Transmission Design Handbook 1983 84, Penton IPC, 1983, pp. C189 192. Calistrat, Michael: Flexible Coupling Installation, Koppers Co. Inc., Baltimore, Md. Diaphragm Couplings Challenge Disk and Gear Types for High Torque, Product Engineering, June 1977, pp. 33 36. Hitchcox, Alan: High Performance Couplings Meet Heavy Demands, Power Transmission Design, October 1982, pp. 46 48. McCormick, Doug: Finding the Right Flexible Coupling, Design Engineering, October 1981, pp. 62 66. Proceedings of the International Conference on Flexible Couplings for High Powers and Speeds, University of Sussex, Brighton, England, July 1972. Schalitz, August: Kupplungs-Atlas, Druckhaus Korntal Fritz Pfitzer, 1975 (German). Schmidt, Richard: Unique Couplings for Large Offset Shafts, Schmidt Couplings, Cincinnati. Schwerdlin, Howard: Combatting Heat in U-joints, Machine Design, July 23, 1981, pp. 83 86. Schwerdlin, Howard: Flexible Couplings, Power Transmission Design Handbook 1983 84, Penton IPC, 1983, pp. 123 126. Wiedenroth, Wolfgang: Fachgebiete in Jahres bersichten, VDI-Z, no. 17, September 1980 (German).
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Source: STANDARD HANDBOOK OF MACHINE DESIGN
SHAFTS
Charles R. Mischke, Ph.D., P.E.
Professor Emeritus of Mechanical Engineering Iowa State University Ames, Iowa
17.1 INTRODUCTION / 17.2 17.2 DISTORTION DUE TO BENDING / 17.3 17.3 DISTORTION DUE TO TRANSVERSE SHEAR / 17.8 17.4 DISTORTION DUE TO TORSION / 17.13 17.5 SHAFT MATERIALS / 17.13 17.6 LOAD-INDUCED STRESSES / 17.14 17.7 STRENGTH / 17.15 17.8 CRITICAL SPEEDS / 17.17 17.9 HOLLOW SHAFTS / 17.19 REFERENCES / 17.21 RECOMMENDED READING / 17.21
NOMENCLATURE
a A b c0 C1, C2 d di E F g i I J k K Kf Distance Area Distance Constant Constants Outside diameter of shaft Inside diameter of hollow shaft Modulus of elasticity Load Gravitation constant index Second moment of area Polar second area moment Torsional spring rate Transverse shear stress magnification factor Fatigue stress concentration factor Span
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