Fatigue characteristics of dual phase steel sheets
Fatigue characteristics of dual-phase steel sheets, commonly used in automobile body construction were established. For this purpose, a series of fatigue tests, each at constant stress amplitude were conducted on 1.2 mm-thick, dual-phase DP600 steel sheet specimens with two different load ratios of...
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my.utm.377162017-09-26T07:28:40Z http://eprints.utm.my/id/eprint/37716/ Fatigue characteristics of dual phase steel sheets Onn, Irwan Herman Ahmad, Norhayati Tamin, Mohd. Nasir TJ Mechanical engineering and machinery Fatigue characteristics of dual-phase steel sheets, commonly used in automobile body construction were established. For this purpose, a series of fatigue tests, each at constant stress amplitude were conducted on 1.2 mm-thick, dual-phase DP600 steel sheet specimens with two different load ratios of minimum-to-maximum stress, R = 0.1 and −1. The resulting fatigue behavior is expressed in terms of fatigue strength-life (S-N) curves. Fatigue behavior of the steel sheets in the high-cycle fatigue region can be represented by Basquin’s equation with coefficient and exponent value of 921.2 and 0.093, respectively. An endurance limit of 255 MPa is observed. In addition, fatigue strengths of the dual-phase steel sheets display lower magnitude than their bulk counterparts. Effect of mean stress on fatigue behavior of the steel sheets is well predicted by Walker’s model. Exponential calibration factor is introduced to the models by SWT, Goodman and Morrow with comparable prediction to the Walker’s model. 2013 Conference or Workshop Item PeerReviewed Onn, Irwan Herman and Ahmad, Norhayati and Tamin, Mohd. Nasir (2013) Fatigue characteristics of dual phase steel sheets. In: 9th International conference on fracture & strength of solids. |
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TJ Mechanical engineering and machinery Onn, Irwan Herman Ahmad, Norhayati Tamin, Mohd. Nasir Fatigue characteristics of dual phase steel sheets |
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Fatigue characteristics of dual-phase steel sheets, commonly used in automobile body construction were established. For this purpose, a series of fatigue tests, each at constant stress amplitude were conducted on 1.2 mm-thick, dual-phase DP600 steel sheet specimens with two different load ratios of minimum-to-maximum stress, R = 0.1 and −1. The resulting fatigue behavior is expressed in terms of fatigue strength-life (S-N) curves. Fatigue behavior of the steel sheets in the high-cycle fatigue region can be represented by Basquin’s equation with coefficient and exponent value of 921.2 and 0.093, respectively. An endurance limit of 255 MPa is observed. In addition, fatigue strengths of the dual-phase steel sheets display lower magnitude than their bulk counterparts. Effect of mean stress on fatigue behavior of the steel sheets is well predicted by Walker’s model. Exponential calibration factor is introduced to the models by SWT, Goodman and Morrow with comparable prediction to the Walker’s model. |
format |
Conference or Workshop Item |
author |
Onn, Irwan Herman Ahmad, Norhayati Tamin, Mohd. Nasir |
author_facet |
Onn, Irwan Herman Ahmad, Norhayati Tamin, Mohd. Nasir |
author_sort |
Onn, Irwan Herman |
title |
Fatigue characteristics of dual phase steel sheets |
title_short |
Fatigue characteristics of dual phase steel sheets |
title_full |
Fatigue characteristics of dual phase steel sheets |
title_fullStr |
Fatigue characteristics of dual phase steel sheets |
title_full_unstemmed |
Fatigue characteristics of dual phase steel sheets |
title_sort |
fatigue characteristics of dual phase steel sheets |
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2013 |
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http://eprints.utm.my/id/eprint/37716/ |
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1643650153732636672 |
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13.214268 |