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    Modeling of Reversed Austenite Formation and Its Effect on Performance of Stainless Steel Components

    Source: Journal of Engineering Materials and Technology:;2021:;volume( 143 ):;issue: 003::page 031006-1
    Author:
    Green, Sadie Louise
    ,
    Yeddu, Hemantha Kumar
    DOI: 10.1115/1.4050134
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: The kinetics of reversed austenite formation in 301 stainless steel and its effect on the deformation of an automobile front bumper beam are studied by using modeling approaches at different length scales. The diffusion-controlled reversed austenite formation is studied by using the Johnson–Mehl–Avrami–Kolmogorov (JMAK) model, based on the experimental data. The model can be used to predict the volume fraction of reversed austenite in a temperature range of 650–750 °C. A three-dimensional elastoplastic phase-field model is used to study the diffusionless shear-type reversed austenite formation in 301 steel at 760 °C. The phase-field simulations show that reversion initiates at martensite lath boundaries and proceeds inwards of laths due to the high driving force at such high temperature. The effect of reversed austenite (RA) and martensite on the deformation of a bumper beam subjected to front and side impacts is studied by using finite element (FE) analysis. The FE simulations show that the presence of reversed austenite and martensite increased the critical speed at which the beam yielded and failed. RA fraction also affects the performance of the bumper beam.
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      Modeling of Reversed Austenite Formation and Its Effect on Performance of Stainless Steel Components

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    https://yetl.yabesh.ir/yetl1/handle/yetl/4276262
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    contributor authorGreen, Sadie Louise
    contributor authorYeddu, Hemantha Kumar
    date accessioned2022-02-05T21:44:58Z
    date available2022-02-05T21:44:58Z
    date copyright3/4/2021 12:00:00 AM
    date issued2021
    identifier issn0094-4289
    identifier othermats_143_3_031006.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4276262
    description abstractThe kinetics of reversed austenite formation in 301 stainless steel and its effect on the deformation of an automobile front bumper beam are studied by using modeling approaches at different length scales. The diffusion-controlled reversed austenite formation is studied by using the Johnson–Mehl–Avrami–Kolmogorov (JMAK) model, based on the experimental data. The model can be used to predict the volume fraction of reversed austenite in a temperature range of 650–750 °C. A three-dimensional elastoplastic phase-field model is used to study the diffusionless shear-type reversed austenite formation in 301 steel at 760 °C. The phase-field simulations show that reversion initiates at martensite lath boundaries and proceeds inwards of laths due to the high driving force at such high temperature. The effect of reversed austenite (RA) and martensite on the deformation of a bumper beam subjected to front and side impacts is studied by using finite element (FE) analysis. The FE simulations show that the presence of reversed austenite and martensite increased the critical speed at which the beam yielded and failed. RA fraction also affects the performance of the bumper beam.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleModeling of Reversed Austenite Formation and Its Effect on Performance of Stainless Steel Components
    typeJournal Paper
    journal volume143
    journal issue3
    journal titleJournal of Engineering Materials and Technology
    identifier doi10.1115/1.4050134
    journal fristpage031006-1
    journal lastpage031006-9
    page9
    treeJournal of Engineering Materials and Technology:;2021:;volume( 143 ):;issue: 003
    contenttypeFulltext
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