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Effect of selective-precipitations process on the corrosion resistance and hardness of dual-phase highcarbon steel

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dc.contributor.author HANDOKO, W
dc.contributor.author ANURAG, A
dc.contributor.author PAHLEVANI, F
dc.contributor.author HOSSAIN, R
dc.contributor.author PRIVAT, K
dc.contributor.author SAHAJWALLA, V
dc.date.accessioned 2021-03-10T07:49:36Z
dc.date.available 2021-03-10T07:49:36Z
dc.date.issued 2019
dc.identifier.citation SCIENTIFIC REPORTS 9 en_US
dc.identifier.issn 2045-2322
dc.identifier.uri https://doi.org/10.1038/s41598-019-52228-z
dc.identifier.uri http://localhost:8080/xmlui/handle/100/28710
dc.description.abstract It is commonly known that precipitation of secondary phase in non-ferrous alloys will affect the mechanical properties of them. But due to the nature of dual-phase low-alloy high-carbon steel and its high potential of precipitation of cementite, there is limited study on tailoring the mechanical and corrosion properties of this grade of steel by controlling the precipitation of different phases. Predicting and controlling precipitation behaviour on this grade of steel is of great importance towards producing more advanced applications using this low-cost alloy. In this study the new concept of selective-precipitation process for controlling the mechanical and corrosion behaviour of dual-phase low-alloy high-carbon steel has been introduced. We have investigated the precipitation of different phases using in-situ observation ultra-high temperature confocal scanning laser microscopy, image analyser - ImageJ, scanning electron microscopy with energy dispersive spectroscopy (SEM/EDS) and electron probe microanalysis (EPMA). Volume fraction of each phase including retained austenite, martensite and precipitated phases was determined by X-ray diffraction (XRD), electrochemical corrosion test by Tafel extrapolation method and hardness performance by nanoindentation hardness measurement. The experimental results demonstrated that, by controlling the precipitations inside the matrix and at grain boundaries through heat treatment, we can increase the hardness of steel from 7.81GPa to 11.4 GPa. Also, corrosion resistance of steel at different condition has been investigated. This new approach will open new possibility of using this low-cost steel for high performance applications. en_US
dc.language.iso English en_US
dc.publisher NATURE PUBLISHING GROUP en_US
dc.subject STAINLESS-STEEL en_US
dc.subject PITTING CORROSION en_US
dc.subject TENSILE PROPERTIES en_US
dc.subject MNS INCLUSIONS en_US
dc.subject HEAT-TREATMENT en_US
dc.subject MICROSTRUCTURE en_US
dc.subject TRANSFORMATION en_US
dc.subject CARBIDES en_US
dc.subject EVOLUTION en_US
dc.subject BEHAVIOR en_US
dc.title Effect of selective-precipitations process on the corrosion resistance and hardness of dual-phase highcarbon steel en_US
dc.type Article en_US


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