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A new approach for predicting the fatigue strength of steels and aluminum alloys in high & giga cycle regimes

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dc.contributor.author Bandara, AMACS
dc.contributor.author Dissanayake, PBR
dc.contributor.author Dissanayake, UI
dc.contributor.author Siriwardane, SASC
dc.date.accessioned 2013-11-13T14:54:16Z
dc.date.available 2013-11-13T14:54:16Z
dc.date.issued 2013-11-13
dc.identifier.uri http://dl.lib.mrt.ac.lk/handle/123/9119
dc.description.abstract Since 1990s various methods have been proposed by researchers to estimate the fatigue strengths of metals at gigacycle fatigue regime (number of cycles > 108). As testing of metals in the gigacycle regime requires much time and sophisticated equipment, obtaining experimental fatigue strengths at gigacycle regime is difficult. Therefore, fatigue strength prediction methods are very important. However, the available prediction methods are complicated and require parameters which are not easily tested. Therefore, it is necessary to discover simple but reliable prediction methods that require few and easily obtainable material parameters. In this study, a new model for predicting the fatigue strength of steels at high and gigacycle fatigue regimes is first proposed. A good global relationship between the ultimate tensile strength, the fatigue strength and the number of cycles to failure is obtained after analyzing more than 80 heats of experimental results of 45 steels and 9 aluminium alloys. Using this global relationship, secondly, a model is proposed for predicting the fatigue strength of steels and alloys. en_US
dc.language.iso en en_US
dc.subject fatigue strength en_US
dc.subject giga cycle regime en_US
dc.subject Vicker’s hardness en_US
dc.subject internal inclusions en_US
dc.subject cyclic stresses en_US
dc.title A new approach for predicting the fatigue strength of steels and aluminum alloys in high & giga cycle regimes en_US
dc.type Conference-Full-text en_US
dc.identifier.year 2012 en_US
dc.identifier.conference ICSBE-2012: International Conference on Sustainable Built Environment en_US
dc.identifier.place Kandy, Sri Lanka en_US
dc.identifier.email bandara@civil.pdn.ac.lk en_US
dc.identifier.email ranjith@civil.pdn.ac.lk en_US
dc.identifier.email udissa@pdn.ac.lk en_US
dc.identifier.email sasc.siriwardane@uis.no en_US


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