Fatigue strengthening of fillets by deep rolling is finding increased application for example in engine crankshaft production for functional and economical reasons. A fatigue design method aimed at exploiting the residual stresses that develop at a notched part following the rolling process is proposed. It is based on the superposition of residual stresses obtained by elastic-plastic FE simulation of the rolling process and the cyclic elastic stresses within a Haigh diagram framework. The fatigue design method is assessed using the experimental evidence obtained by testing notched specimens made of 30NiCrMo12 steel subjected to different rolling process parameters.

Fatigue Assessment of Notched Steel Including Residual Stresses Obtained by the Rolling Process / Nicoletto, Gianni; A., Saletti. - In: STRUCTURAL DURABILITY & HEALTH MONITORING. - ISSN 1930-2983. - 192:(2012), pp. 1-18.

Fatigue Assessment of Notched Steel Including Residual Stresses Obtained by the Rolling Process

NICOLETTO, Gianni;
2012-01-01

Abstract

Fatigue strengthening of fillets by deep rolling is finding increased application for example in engine crankshaft production for functional and economical reasons. A fatigue design method aimed at exploiting the residual stresses that develop at a notched part following the rolling process is proposed. It is based on the superposition of residual stresses obtained by elastic-plastic FE simulation of the rolling process and the cyclic elastic stresses within a Haigh diagram framework. The fatigue design method is assessed using the experimental evidence obtained by testing notched specimens made of 30NiCrMo12 steel subjected to different rolling process parameters.
2012
Fatigue Assessment of Notched Steel Including Residual Stresses Obtained by the Rolling Process / Nicoletto, Gianni; A., Saletti. - In: STRUCTURAL DURABILITY & HEALTH MONITORING. - ISSN 1930-2983. - 192:(2012), pp. 1-18.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11381/2455063
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