• Home
  • About Us
  • Contact Us
  • Register
  • Log in
  • Order
Advanced
  • Home
  • Periods
  • Vol. 15
  • Issue1 Vol.15
  • 1
    Issue 1 Vol. 15 Spring 2024

    XML

    isc pubmed crossref medra doaj doaj
  • List of Articles


      • Open Access Article
        • Abstract Page
        • Full-Text

        1 - Introduction: Titanium alloys containing the β phase have much better corrosion resistance. Some alloying elements, such as Mo, stabilize this phase. Among the Ti alloys that contain this element, the Ti-10Mo alloy is of particular importance. If this alloy is produced using selective laser melting (SLM), it will be an approach that is user-friendly due to the nature of the process. Methods: Samples were printed by SLM process. The constituent phases were determined by XRD. The microstructure was evaluated using optical and scanning electron microscopes. Corrosion behavior was evaluated by cyclic potentiodynamic polarization and electrochemical impedance spectroscopy. Findings: In the XRD pattern of pure Ti powder and printed sample, α and α/α' phases are seen, respectively. However, Ti-10Mo powder mixture consists of α and Mo phases, the β phase is more dominant in printed sample because of the Mo penetration in the Ti matrix. As well as, in the microstructure of Ti10Mo the beta phase is seen as Mo-rich streaks, whereas in pure Ti it is found relatively negligible as epitaxially grown primary columnar β grains with acicular α' martensite phase. Mo addition to pure Ti reduces its passive current density and stabilize oxide film. However, Ti-10Mo alloy, with its various phases and galvanic couples, experiences rupture of the passive oxide film at higher potentials, leading to pitting corrosion. The impedance module value of Ti-10Mo is higher than that of pure Ti. Both samples have a double passive oxide film, with Ti-10Mo alloy exhibiting higher resistance than pure Ti.
        Arezoo Pourshoja karim Avak Maziyar  Azadbeh Mohamadreza Etminanfar Mehdi  Ojaghi
        10.30495/jnm.2024.33378.2040
      • Open Access Article
        • Abstract Page
        • Full-Text

        2 - Stabilization of Doxorubicin Drug on Graphene Oxide Nanosystem and Computer simulation Study (In-Silico) on Topoisomerase II Enzyme
        Sedigheh Pargaleh boroujeni Nooreddin Goodarzian Neda Hasanzadeh Mohammad Kazem Mohammadi
        10.30495/jnm.2024.33626.2046
      • Open Access Article
        • Abstract Page
        • Full-Text

        3 - Fabrication of Ti Bulk amorphous alloys by mechanical alloying and plasma sintering methods and evaluation of structure and corrosion behavior
        Hossein  Naseri Behnam Lotfi Zohreh Sadeghian
        10.30495/jnm.2024.33830.2053
      • Open Access Article
        • Abstract Page
        • Full-Text

        4 - The effect of the chemical composition of the substrate and Na2WO4 additive on the microstructure and corrosion behavior of PEO coatings of aluminum-silicon alloys
        Masoud Moshrefifar
        https://doi.org/10.71905/jnm.1403.1188983
      • Open Access Article
        • Abstract Page
        • Full-Text

        5 - Investigation of the Effect of Processing and Sintering Parameters on Voltage-Dependent Variable Resistors for Controlling Voltage and Leakage Current in ZnO-Based Compositions
        Mohammad Jazirehpour Miad Maleki
        https://doi.org/10.71905/jnm.1403.1192900
      • Open Access Article
        • Abstract Page
        • Full-Text

        6 - Synthesis of calcium phosphate particles via the solution combustion method and investigation of the effects of initial pH and heat treatment temperature on the physical and biological properties of the produced powder
        Neda Sami Sahar Mollazadeh Beidokhti Jalil  Vahdati Khaki
        https://doi.org/10.71905/jnm.1403.1192050
  • Home Page
  • Site Map
  • Contact Us
  • Home
  • Site Map
  • Islamic Azad University
  • Contact Us

The rights to this website are owned by the Raimag Press Management System.
Copyright © 2021-2025

Home| Login| About Us| Contact Us|
[فارسی] [العربية] [fa] [ar]
  • IAU
  • Login