Dr Hiroto Kitaguchi

School of Metallurgy and Materials
Research Fellow

Contact details

Hiroto Kitaguchi is a research fellow within the School of Metallurgy and Materials. His research focuses on quantitative and in-depth investigations of micro-/nano-microstructures by the applications of conventionally available analytical instruments, e.g. TEM, as the complementary investigation with atomistic-scale techniques, such as APT, to elucidate and rationalise physical phenomena in metallic materials.

Qualifications

  • B.Sc. Materials Engineering and Science, Niigata University Department of Engineering, Niigata, Japan, 1997-2002
  • Ph.D. Metallurgy and Materials engineering, University of Birmingham, UK, 2006-2011

Teaching

Electron Microscopy - Fundamental and Applications - Biannual open lecture to the public (for enquiries please contact h.kitaguchi@bham.ac.uk)

Research

Hiroto's areas of research interest include:

Material characterisation

  • Electron microscopy: TEM, SEM
  • X-ray spectroscopy: EDS, WDS, XRF
  • Diffraction/scattering technique: XRD, EBSD, ECCI
  • Thermal analysis: DSC
  • Three-dimensional atom probe tomography: APT
  • Focused ion beam microscopy: FIB

Metal processing

  • Friction joining (inertia and linear friction joining)
  • Fusion welding (Metallurgical phenomena, failure investigations)

Physical metallurgy

  • Thermodynamics and kinetics
  • Phase transformations (solid/solid and solid/liquid)
  • Crystallography of metals and ceramics
  • Oxidation (non-ambient pressure/temperature)
  • Crack growth of polycrystalline metals at high temperatures
  • Non-ferrous alloys, e.g. Ni, Ti, Al alloys
  • Steels   

Publications

H.S. Kitaguchi, L. Small, I.P. Jones, Y.L. Chiu, M.C. Hardy, P. Bowen, MC decomposition and boride formation in a next generation polycrystalline Ni based superalloy during isothermal exposure at 900 °C, Materials Characterization 209 (2024) 113721. DOI: https://doi.org/10.1016/j.matchar.2024.113721

H.S. Kitaguchi, H.Y. Li, H.E. Evans, R.G. Ding, I.P. Jones, G. Baxter, P. Bowen, Oxidation ahead of a crack tip in an advanced Ni-based superalloy, Acta Materialia 61(6) (2013) 1968-81 DOI: https://doi.org/10.1016/j.actamat.2012.12.017.

 H.S. Kitaguchi, I.P. Jones, C. Yu-Lung, D. Rengen, M.C. Hardy, P. Bowen, Mesoscopic quantitative chemical analyses using STEM-EDX in current and next generation polycrystalline Ni-based superalloys, Ultramicroscopy 204 (2019) 55-72 DOI: https://doi.org/10.1016/j.ultramic.2019.04.015.

 H.S. Kitaguchi, S. Lozano-Perez, M.P. Moody, Quantitative analysis of carbon in cementite using pulsed laser atom probe, Ultramicroscopy 147 (2014) 51-60 DOI: https://doi.org/10.1016/j.ultramic.2014.06.004.

Selected other publications:

F. Wang, H.S. Kitaguchi, Y.-L. Chiu, Electron irradiation enhanced precipitation in a Mg-6 wt% Sn alloy in TEM, Materials Characterization 194 (2022) 112345 DOI: https://doi.org/10.1016/j.matchar.2022.112345.

 A. Vrettou, H.S. Kitaguchi, B. Cai, T. Connolley, D.M. Collins, Mechanisms controlling ductility loss from abrupt Strain Path Changes in a low carbon steel, Materials Science and Engineering: A 843 (2022) 143091 DOI: https://doi.org/10.1016/j.msea.2022.143091.

 M.C. Hardy, M. Detrois, E.T. McDevitt, C. Argyrakis, V. Saraf, P.D. Jablonski, J.A. Hawk, R.C. Buckingham, H.S. Kitaguchi, S. Tin, Solving Recent Challenges for Wrought Ni-Base Superalloys, Metallurgical and Materials Transactions A 51(6) (2020) 2626-50 DOI:https://doi.org/10.1007/s11661-020-05773-6.

 M.J. Anderson, F. Schulz, Y. Lu, H.S. Kitaguchi, P. Bowen, C. Argyrakis, H.C. Basoalto, On the modelling of precipitation kinetics in a turbine disc nickel based superalloy, Acta Materialia 191 (2020) 81-100 DOI: https://doi.org/10.1016/j.actamat.2020.03.058.

 M.C. Hardy, C. Argyrakis, H.S. Kitaguchi, A.S. Wilson, R.C. Buckingham, K. Severs, S. Yu, C. Jackson, E.J. Pickering, S.C.H. Llewelyn, C. Papadaki, K.A. Christofidou, P.M. Mignanelli, A. Evans, D.J. Child, H.Y. Li, N.G. Jones, C.M.F. Rae, P. Bowen, H.J. Stone, Developing Alloy Compositions for Future High Temperature Disk Rotors, in: S. Tin, M. Hardy, J. Clews, J. Cormier, Q. Feng, J. Marcin, C. O'Brien, A. Suzuki (Eds.) Superalloys 2020, Springer International Publishing, pp. 19-30 https://doi.org/10.1007/978-3-030-51834-9_2

 F. Schulz, H.Y. Li, H.S. Kitaguchi, D. Child, S. Williams, P. Bowen, Influence of Tertiary Gamma Prime (γ′) Size Evolution on Dwell Fatigue Crack Growth Behavior in CG RR1000, Metallurgical and Materials Transactions A 49(9) (2018) 3874-3884 DOI:https://doi.org/10.1007/s11661-018-4779-9.

 H.S. Kitaguchi, M.P. Moody, H.Y. Li, H.E. Evans, M.C. Hardy, S. Lozano-Perez, An atom probe tomography study of the oxide–metal interface of an oxide intrusion ahead of a crack in a polycrystalline Ni-based superalloy, Scripta Materialia 97 (2015) 41-4 DOI: https://doi.org/10.1016/j.scriptamat.2014.10.025.