The elastic stress concentrations are addressed that are developed from the keyless frictionless press fit of a shaft subjected to bending into a hub with rounded bore edges. Derived from a formal modeling of the title problem in terms of an integral equation, a set of normalized parameters is proposed that accounts for the combined effects on the hub stress concentration of the fillet radius, the shaft radius, the hub outer radius, the hub axial length, the interference, the Young's modulus, and the bending couple. A numerical validation of the normalized parameters is presented. With the aid of Finite Elements, various design charts are compiled that (a) forecast the bending couple initiating the detachment between the shaft and the hub, and (b) report the elastic stress concentrations within the hub versus the proposed normalized parameters in the absence of shaft–hub detachment. Such charts assist the designer in dimensioning an interference fit in the presence of a bending couple.
Normalization of the stress concentrations at the rounded edges of an interference fit between a solid shaft subjected to bending and a hub / Strozzi, Antonio; Bertocchi, Enrico; Baldini, Andrea; Mantovani, Sara. - In: MECHANICS BASED DESIGN OF STRUCTURES AND MACHINES. - ISSN 1539-7734. - 44:4(2016), pp. 405-425. [10.1080/15397734.2015.1086274]
Normalization of the stress concentrations at the rounded edges of an interference fit between a solid shaft subjected to bending and a hub
STROZZI, Antonio;BERTOCCHI, Enrico
;BALDINI, Andrea;MANTOVANI, SARA
2016
Abstract
The elastic stress concentrations are addressed that are developed from the keyless frictionless press fit of a shaft subjected to bending into a hub with rounded bore edges. Derived from a formal modeling of the title problem in terms of an integral equation, a set of normalized parameters is proposed that accounts for the combined effects on the hub stress concentration of the fillet radius, the shaft radius, the hub outer radius, the hub axial length, the interference, the Young's modulus, and the bending couple. A numerical validation of the normalized parameters is presented. With the aid of Finite Elements, various design charts are compiled that (a) forecast the bending couple initiating the detachment between the shaft and the hub, and (b) report the elastic stress concentrations within the hub versus the proposed normalized parameters in the absence of shaft–hub detachment. Such charts assist the designer in dimensioning an interference fit in the presence of a bending couple.File | Dimensione | Formato | |
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