Study of Cu-rich phase precipitation in austenitic antibacterial stainless steel

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Cu precipitation behaviors in two Cu-bearing austenitic antibacterial stainless steels,type 304 and type 317L,were systematically studied by using relatively simple methods for materials analysis,including micro-hardness,electrical resistivity,electrochemical impedance spectroscopy,X-ray diffraction and differential scanning calorimetry.The results indicated that after aging at elevated temperature,the micro-hardness, electrical resistivity,electrochemical impedance and lattice constant of the steel were all varied at different degrees due to the precipitation and growth of Cu-rich phases.The results also showed that the heat evolution during the process of Cu precipitation could be sensitively detected by means of differential scanning calorimetry,obtainning the starting temperature,peak temperature,peak area of the Cu-rich precipitation,and even the activation energy by calculation.The results confirmed that the Cu-rich phased precipitation in the Cu-bearing austenitic antibacterial stainless steel should be a thermal activation process controlled by Cu diffusion.All the materials analysis methods used in this study can be more simple and effective for application in R & D of the Cu-bearing antibacterial stainless steels. Cu precipitation behaviors in two Cu-bearing austenitic antibacterial stainless steels, type 304 and type 317L, were systematically studied by using relatively simple methods for materials analysis, including micro-hardness, electrical resistivity, electrochemical impedance spectroscopy, X-ray diffraction and differential scanning calorimetry.The results indicated that after aging at elevated temperature, the micro-hardness, electrical resistivity, electrochemical impedance and lattice constant of the steel were all varied at different degrees due to the precipitation and growth of Cu-rich phases. The results also showed that the heat evolution during the process of Cu precipitation could be sensitively detected by means of differential scanning calorimetry, obtainning the starting temperature, peak temperature, peak area of ​​the Cu-rich precipitation, and even the activation energy by calculation. results that that the Cu-rich phased precipitation in the Cu-bearing austenitic antibacterial stainless steel should be a thermal activation process controlled by Cu diffusion. All the materials analysis methods used in this study can be more simple and effective for application in R & D of the Cu-bearing antibacterial stainless steels.
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