The stress state in frictional interference fits under torsional and axial loading is examined. The optimal ratio between the inside and outside diameters of the hub is calculated, which maximizes the load transmitted by the joint. Design formulae and charts are provided, giving the most efficient aspect ratio of the hub for all practical situations. It is found that the maximum load capacity is achieved for an aspect ratio in the range from 0.5 to 0.7, regardless of the frictional coefficient (up to 1), of the kind of loading (torsional or axial), and of the material response (brittle or ductile).

Optimal aspect ratio of interference fits for maximum load transfer capacity / Castagnetti, Davide; Dragoni, Eugenio. - In: JOURNAL OF STRAIN ANALYSIS FOR ENGINEERING DESIGN. - ISSN 0309-3247. - STAMPA. - 40:(2005), pp. 177-184. [10.1243/030932405X7737]

Optimal aspect ratio of interference fits for maximum load transfer capacity

CASTAGNETTI, Davide;DRAGONI, Eugenio
2005

Abstract

The stress state in frictional interference fits under torsional and axial loading is examined. The optimal ratio between the inside and outside diameters of the hub is calculated, which maximizes the load transmitted by the joint. Design formulae and charts are provided, giving the most efficient aspect ratio of the hub for all practical situations. It is found that the maximum load capacity is achieved for an aspect ratio in the range from 0.5 to 0.7, regardless of the frictional coefficient (up to 1), of the kind of loading (torsional or axial), and of the material response (brittle or ductile).
2005
40
177
184
Optimal aspect ratio of interference fits for maximum load transfer capacity / Castagnetti, Davide; Dragoni, Eugenio. - In: JOURNAL OF STRAIN ANALYSIS FOR ENGINEERING DESIGN. - ISSN 0309-3247. - STAMPA. - 40:(2005), pp. 177-184. [10.1243/030932405X7737]
Castagnetti, Davide; Dragoni, Eugenio
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/306874
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