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Postprint-Fatigue life estimation of cast aluminium alloys considering the effect of porosity on initiation and propagation phases (1.604Mb)
Preprint-Fatigue life estimation of cast aluminium alloys considering the effect of porosity on initiation and propagation phases (1.805Mb)
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Title
Fatigue life estimation of cast aluminium alloys considering the effect of porosity on initiation and propagation phases
Author
Hidalgo, Raquel
Esnaola, Jon AnderORCID
Llavori, InigoORCID
Larrañaga, MirenORCID
Hurtado, IñakiORCID
Herrero-Dorca, NuriaORCID
Research Group
Diseño y Mecánica Estructural
Version
Postprint
Document type
Journal Article
Language
English
Rights
© Elsevier
Access
Open access
URI
https://hdl.handle.net/20.500.11984/14645
Publisher’s version
https://doi.org/10.1016/j.ijfatigue.2019.04.006
Published at
International Journal of Fatigue  Vol. 125. August,
Primera página
468
Última página
478
Publisher
Elsevier
Keywords
Cast aluminium alloys
Casting defects
Porosity
Fatigue life ... [+]
Cast aluminium alloys
Casting defects
Porosity
Fatigue life
ODS 9 Industria, innovación e infraestructura [-]
Subject (UNESCO Thesaurus)
Structural design
UNESCO Classification
Structural engineering
Abstract
Porosity is one of the main parameters in the fatigue life of cast alloys as it affects both crack initiation and propagation phases. However, most fatigue assessments present a lack of accuracy as th ... [+]
Porosity is one of the main parameters in the fatigue life of cast alloys as it affects both crack initiation and propagation phases. However, most fatigue assessments present a lack of accuracy as they only consider the effect of the initial pore on the fatigue limit. Therefore, in the present study, first, the effect of the main porosity characteristics on the crack initiation and propagation phases is evaluated. Then, an alternative fatigue assessment model is proposed and implemented for Low Pressure Die Casting (LPDC) A356-T6 aluminium alloy. The model accounts for the effect of the initial pore size and distance to surface on the initiation phase as well as fractographic porosity and average pore size on the fracture surface on the propagation phase. Finally, the model was validated by means of experimental tests. Results have shown that the proposed model is able to qualitatively predict the scatter trend of samples tested at the same load. In addition, the model presents high quantitative accuracy in life estimation with an average logarithmic error below 2% and an absolute average error below 16%. [-]
Funder
Gobierno Español
Program
Retos Colaboración 2013-2016
Number
RTC-2015-3822-4
Project
Retos-Colaboración del Programa Estatal de Investigación, Desarrollo e Innovación Orientada a los Retos de la Sociedad, en el marco del Plan Estatal de Investigación Científica y Técnica y de Innovación
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