The fatigue strength of ferritic, pearlitic, and solution strengthened ferritic ductile irons taken from heavy sections and characterized by long solidification times has been assessed. Starting from the idea of Murakami and co-workers, a new model for the prediction of the fatigue strength is proposed. It allows a sound fatigue assessment of the fatigue strength of as-cast ductile irons containing solidification defects, such as low nodule count, exploded, chunky and spiky graphite, or microshrinkage porosities. The newly developed equation validated by means of an extensive benchmarking with data taken from the literature has shown a very high potential for applications to thick-walled components. © 2018 Wiley Publishing Ltd.
Novel method for the fatigue strength assessment of heavy sections made by ductile cast iron in presence of solidification defects / Borsato, T.; Ferro, Paolo; Berto, Filippo. - In: FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES. - ISSN 8756-758X. - 41:8(2018), pp. 1746-1757. [10.1111/ffe.12815]
Novel method for the fatigue strength assessment of heavy sections made by ductile cast iron in presence of solidification defects
Ferro Paolo;Berto Filippo
2018
Abstract
The fatigue strength of ferritic, pearlitic, and solution strengthened ferritic ductile irons taken from heavy sections and characterized by long solidification times has been assessed. Starting from the idea of Murakami and co-workers, a new model for the prediction of the fatigue strength is proposed. It allows a sound fatigue assessment of the fatigue strength of as-cast ductile irons containing solidification defects, such as low nodule count, exploded, chunky and spiky graphite, or microshrinkage porosities. The newly developed equation validated by means of an extensive benchmarking with data taken from the literature has shown a very high potential for applications to thick-walled components. © 2018 Wiley Publishing Ltd.File | Dimensione | Formato | |
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Fatigue Fract Eng Mat Struct - 2018 - Borsato - Novel method for the fatigue strength assessment of heavy sections made by.pdf
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