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Dataset: Effect of Zr addition on the corrosion resistance of Ti-Mo alloy in the H2O2-containing inflammatory environment

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https://zenodo.org/record/13903530
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Title: Effect of Zr addition on the corrosion resistance of Ti-Mo alloy in the H2O2-containing inflammatory environment Authors: Agata Sotniczuk, Agata Sotniczuk, Witold Chromiński, Damian Kalita, Halina Garbacz, Chenyang Xie, Junhui Tang, Baojie Dou, Marcin Pisarek, Aleksandra Baron-Wiecheć, Łukasz Kurpaska, Fan Sun, Kevin Ogle Corresponding Author: Agata Sotniczuk ORCID: 0000-0002-3468-0468 This record contains files generated in the preparation process of the following publication:Effect of Zr addition on the corrosion resistance of Ti-Mo alloy in the H2O2-containing inflammatory environmentAgata Sotniczuk, Agata Sotniczuk, Witold Chromiński, Damian Kalita, Halina Garbacz, Chenyang Xie, Junhui Tang, Baojie Dou, Marcin Pisarek, Aleksandra Baron-Wiecheć, Łukasz Kurpaska, Fan Sun, Kevin Ogle submitted to Applied Surface Science (Elsevier) This research was funded in whole by National Science Centre, Poland [2023/48/C/ST11/00085]: Sonatina 7 grant. Designations:TiMo: titanium alloy with 12 weight % of molybdenum (Ti-12Mo) fabricated by arc melting technique followed by cold rolling and heat treatmentTiMoZr: titanium alloy with 12 weight % of molybdenum and 5 weight% of zirconium (Ti-12Mo-5Zr) fabricated by arc melting technique cold rolling and heat treatment (950 Celsius degrees/30 minutes) followed by water quenchingEBSD: Electron backscattered diffractionPBS: Phosphate buffer saline solutionOCP: Open circuit potentialEIS: Electrochemical impedance spectroscopyPSP: Potentiostatic polarizationICP-AES: Inductively coupled plasma atomic emission spectrometerAESEC: Atomic emission spectroelectrochemistry XPS: X-ray photoelectron spectroscopySEM: Scanning electron microscopeTEM: Transmission electron microscopeHAADF STEM: High-angle annular dark-field imaging in a scanning transmission electron microscope EDS: Energy dispersive spectroscopy|Z|: impedance modulus [Ohm·cm^2]vTi - dissolution rate for titanium [ng·s^-1·cm^-2]vMo - dissolution rate for molybdenum [ng·s^-1·cm^-2]vZr - dissolution rate for zirconium [ng·s^-1·cm^-2]vƩ TiMo - total elemental dissolution rate for TiMo alloy[ng·s^-1·cm^-2]vƩ TiMoZr - total elemental dissolution rate for TiMoZr alloy[ng·s^-1·cm^-2]jƩ TiMo - total elemental current for TiMo alloy [µA·cm^-2]jƩ TiMoZr- total elemental current for TiMoZr alloy [µA·cm^-2]je TiMo - total electrochemical current for TiMo alloy [µA·cm^-2]je TiMoZr - total electrochemical current for TiMoZr alloy [µA·cm^-2] General remarks: Conditions of corrosion tests (OCP, EIS, AESEC):1) Solution: PBS+0.1M H2O22) Temperature: 37 Celsius degrees3) Electrodes: reference electrode - Ag/AgCl/KCl (sat), counter electrode-platinum plate4) EIS: potential - OCP±10 mV, frequency range - 1000 Hz down to 0.01 Hz, surface area: 0.785 cm25) AESEC: tests were performed in a flow cell and the flow rate of solution was 1 ml/min, surface area: 1 cm2. AESEC procedure: step 1) OCP monitoring (1200s), step 2) PSP at -1V (1200s), step 3) OCP monitoring (2700s) Files formats: Raw data and calculated results of OCP, EIS and AESEC tests: .xls, SEM micrographs: .tif, TEM micrographs/ EBSD /EDS maps: .jpg or .tifUnits are provided in brackets. Content of data files is described in details in README_APSUC2024.txt file DOI: 10.5281/zenodo.13903531 Data are published under Creative Commons Zero v1.0 Universal (CC0) license How to cite Dataset: Sotniczuk, A., Chromiński, W., Kalita, D., Garbacz, H., Xie, C., Tang, J., Dou, B., Pisarek, M., Baron-Wiecheć, A., Kurpaska, Ł., Sun, F., & Ogle, K. (2024). Dataset: Effect of Zr addition on the corrosion resistance of Ti-Mo alloy in the H2O2-containing inflammatory environment [Data set]. Zenodo. https://doi.org/10.5281/zenodo.13903531
创建时间:
2024-10-11
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