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Assoc. Prof. (Thai) Dr.-Ing. Piyada Suwanpinij

Darstellung eines Netzwerks mit miteinander verbundenen Knotenpunkten in einem komplexen Muster.
  1. Institute
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Assoc. Prof. (Thai) Dr.-Ing.

Details

Assoc. Prof. (Thai) Dr.-Ing. Piyada Suwanpinij

Head of Working Group Metallurgy and Metal Forming

Departments: Materials Science , Metallurgy and Metal Forming

Phone
+49 421 218 514 70
Mobil
+49 171 81574 43
Fax
+49 421 218 51333
Email
suwanpinij@iwt-bremen.de
Office
Leibniz-Institut für Werkstofforientierte Technologien - IWT
FZB - Room 2310
Badgasteiner Str. 3
28359 Bremen
     

Personal data

Research profiles

Phase Transformation
Hot Rolling
Precipitation in Metals
Materials Characterisation
Synchrotron Radiation
Bainite
Rail Steel
Modelling and Simulation in Phase Transformation and Precipitation
 

Academic education with degree

2002 – 2003MMet (Master of Metallurgy) with Distinction, focused in Advanced Metallurgy, Department of Engineering Materials University of Sheffield, United Kingdom, with a dissertation titled ‘Improving Product Surface Finish from Hot Rolling’
 
1997 – 2001B.Eng (Bachelor of Engineering) with GPA 3.83/4.00, First Class Honour, Gold Medal, Department of Metallurgical Engineering, Chulalongkorn University, Bangkok, Thailand


Scientific degrees

10/2006 – 11/2012Dr.-Ing. (Doctor of Engineering), Department of Ferrous Metallurgy (IEHK), RWTH Aachen University, Aachen, Germany, on ‘Multi-scale Modelling of Hot Rolled Dual-Phase Steels for Process Design’ with magna cum laude


Professional career since graduation

Since 02/2018Associate Professor (Thailand) in Metallurgy
 
Since 01/2015Assistant Professor(Thailand) in Metallurgy
 
Since 11/2012Lecturer and Researcher, Materials and Production Engineering (MPE) program, Thai German Graduate School of Engineering (TGGS), King Mongkut’s University of Technology North Bangkok (KMUTNB)
 
10/2006 – 11/2012Doctoral Candidate/Scientific Co-Worker at Department of Ferrous Metallurgy (renamed as Steel Institute), RWTH Aachen University
 
12/2003 – 04/2006Metallurgical Engineer, Department of Primary Industry and Mines, Ministry of Industry, Thailand
  


Research Expertise

Simulation ToolsMatCalc, ThermoCalc, MATLAB, MICRESS, DICTRA
Materials CharacterisationMetallography, Dilatometry, XAS, XAFS, PEEM, XRD, GI-XRD, µ-XRF, EPMA, XPS, X-ray tomography (µ-CT Scan), DSC, SXES

Awards

2018Outstanding Young Metallurgist of Thailand

Latest 10 publications

  • Boontanom, A., Maddaloni, M., Suwanpinij, P., Vassalini, I., Alessandri, I. 2024.
    Industrial waste against pollution: Mill scale-based magnetic hydrogel for rapid abatement of Cr(VI). Environmental Science: Water Research & Technology. , DOI: 10.1039/d3ew00490b. OPEN ACCESS
  • Akuata, C. K., Gunawan, F. R., Suwanpinij, P., Zander, D. 2023.
    Microstructure Evolution and Localized Corrosion Susceptibility of an Al-Zn-Mg-Cu-Zr 7xxx Alloy with Minor Cr Addition. Materials. 16 (3), 946. DOI: 10.3390/ma16030946. OPEN ACCESS
  • Phyu, M. P., Adjei-Kyeremeh, F., Suwanpinij, P., Raffeis, I., Apel, M., Bührig-Polaczek, A. 2023.
    Phase-Field Simulation of Microstructure Formation in Gas-Atomized Al–Cu–Li–Mg Powders. Materials. 16 (4), 1677. DOI: 10.3390/ma16041677. OPEN ACCESS
  • Worasaen, K., Suwanpinij, P., Tuchinda, K. 2023.
    Effect of Cryogenic Treatment on the Microstructure Modification of SKH51 Steel. Applied Science and Engineering Progress. 16 (1), DOI: 10.14416//j.asep.2021.11.008.
  • Dickert, H. H., Suwanpinij, P., Bleck, W. 2022.
    Study of Intercritical Annealing in Air-Cooled Fe-Mn-Al-C Lightweight Forging Steel for Tailoring the Mechanical Properties. steel research international. 93 (6), DOI: 10.1002/srin.202100622. OPEN ACCESS
  • Suwanpinij, P., Bambach, M., Bootchanont, A., Sailuam, W. 2022.
    Local Structure Investigation of Cu Precipitates in Modified 18CrNiMo7-6 Steels by Synchrotron X-ray Absorption Spectroscopy. ISIJ - Iron and Steel Institute of Japan - International. 62 (5), 977-983. DOI: 10.2355/isijinternational.ISIJINT-2021-409. OPEN ACCESS
  • Suwanpinij, P., Thonondaeng, T., Kumma, P., Suksawat, B., Lothongkum, G. 2022.
    Control of the bainitic structure for a wear-resisting hard-faced rail track. Materials Testing. 64 (1), 1-10. DOI: 10.1515/mt-2021-2076.
  • Suwanpinij, P., Dickert, H. H. 2022.
    A Control-Cooled Hot-Forged Medium Carbon V-Microalloyed Steel: Strengthening Breakdown in Conjunction with the Synchrotron X-Ray Absorption Spectroscopy. steel research international. 93 (6), 2100428. DOI: 10.1002/srin.202100428. OPEN ACCESS
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Leibniz-Institut für 
Werkstofforientierte Technologien - IWT

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Tel.: (0421) 218-51400
Fax: (0421) 218-51333

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      • Materials Engineering
        • Heat Treatment
        • Surface Technology
        • Lightweight Materials
        • Mechanical Properties
        • Physical Analysis
        • Metallographic Analysis
        • Metallurgy and Metal Forming
      • Process Engineering
        • Melt Atomization and Spray Forming
        • Multiphase Flow, Heat and Mass Transfer
        • Processing of functional materials
        • Reactive Spray Deposition Technology
      • Manufacturing Technologies
        • Laboratory for Precision Machining (LFM)
        • Cutting and Mechanical Surface Treatment
        • Abrasive Processes and Gear Technology
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        • SPP 2006
        • SPP 1980
        • SPP 1934
        • SPP 1713
        • SPP 1679
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        • FOR 2688
        • FOR 1845
    • Technology and Knowledge Transfer
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  • Young Talent & Career
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    • Offers for students
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  • University & Teaching
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      • Current News
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      • Current Events
      • IWT & friends - Industry and Cooperation Days
      • IWT-Alumnitag
      • Digital event series: "Leibniz-IWT live"
        • Application of deep learning image recognition techniques
        • Rapid identification of microorganisms with the MALDI bio
        • Towards Useful Ontologies in Material Science Engineering
        • Digital material-oriented production
        • Introduction to atom probe tomography and its application
        • The recyclable material aerated concrete
        • Artificial intelligence in production preparation
        • Material development for laser additive manufacturing
        • Flame-Made Metal Sulfide Nanoparticles
        • Schadensanalyse und Werkstoffprüfung an der MPA
    • Press
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