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Information Journal Paper

Title

THE FINITE ELEMENT ANALYSIS OF STANDARD HARDENABILITY TEST (JOMINY TEST) USING MACHNIENKO KINETIC MODEL FOR S355 STEEL

Pages

  57-68

Abstract

 In the present research, the FINITE ELEMENT ANALYSIS of the standard hardenability test (Jominy test) was performed both thermally and metallurgically using ABAQUS finite element software. In order to predict the volume fraction of the obtained phases and the hardness profile during CONTINUOUS COOLING stage, the appropriate user-defined subroutine based on the Machnienko KINETIC MODEL was employed in the data flow of the software. The results obtained from the FINITE ELEMENT ANALYSIS were compared to those extracted from the reliable references and the prediction of the KINETIC MODEL employed in the JMATPRO commercial software. The results showed the higher precision of the Machnienko model in comparison with the model4 used in the JMATPRO software. This can be attributed mainly to more accurate definition of the conditions of PHASE TRANSFORMATIONS and the customization of the model based on the experimental information for the materials used in this model.

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    APA: Copy

    KHAJEH, A., JENABALI JAHROMI, S.A., & DANESH MANESH, H.. (2015). THE FINITE ELEMENT ANALYSIS OF STANDARD HARDENABILITY TEST (JOMINY TEST) USING MACHNIENKO KINETIC MODEL FOR S355 STEEL. JOURNAL OF NEW MATERIALS, 5(3 (19)), 57-68. SID. https://sid.ir/paper/169989/en

    Vancouver: Copy

    KHAJEH A., JENABALI JAHROMI S.A., DANESH MANESH H.. THE FINITE ELEMENT ANALYSIS OF STANDARD HARDENABILITY TEST (JOMINY TEST) USING MACHNIENKO KINETIC MODEL FOR S355 STEEL. JOURNAL OF NEW MATERIALS[Internet]. 2015;5(3 (19)):57-68. Available from: https://sid.ir/paper/169989/en

    IEEE: Copy

    A. KHAJEH, S.A. JENABALI JAHROMI, and H. DANESH MANESH, “THE FINITE ELEMENT ANALYSIS OF STANDARD HARDENABILITY TEST (JOMINY TEST) USING MACHNIENKO KINETIC MODEL FOR S355 STEEL,” JOURNAL OF NEW MATERIALS, vol. 5, no. 3 (19), pp. 57–68, 2015, [Online]. Available: https://sid.ir/paper/169989/en

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