Research Resources

Research Resources

Academic Papers

2026

  1. Kenta Yanagisawa, Ikuyo Ohta, Isao Yamashita, Jiang Quan, Ryosuke Matsuzaki, 3D printing of continuous fiber-reinforced ceramic matrix composites: influence of process parameters on microstructure and tensile strength, Composites Part A, 205 (2026), 109727. Peer-reviewed
  2. Issei Ogawa, Gen Watanabe, Hiroshi Ikaida, Mitsuo Matsunaga, Yutaro Arai, Ryosuke Matsuzaki, Surface topography sensing and defect location prediction during CFRTP 3D printing process, Composites Part A, 200 (2026), 109262. Peer-reviewed
  3. M. J. Mohammad Fikry, Hayato Nakatani, Akio Ohtani, Satoshi Kobayashi and Shinji Ogihara, Mechanical properties and damage behavior of bi-directional glass fiber non-crimp fabric laminates: effects of laminate and nesting configurations, Advanced Composite Materials, Vol. 35 (2026), pp. 161–182, doi:10.1080/09243046.2025.2485803 Peer-reviewed

2025

  1. A. Hirano, K. Watanabe, A. Takahashi, A. Nomoto, T. Kumagai, Advanced modeling of the ductile-brittle transition in neutron-irradiated steel: A discrete dislocation dynamics approach, Materialia, Vol. 42 (2025), 102491, doi:10.1016/j.mtla.2025.102491 Peer-reviewed
  2. A. Hirano, A. Takahashi, M. Alabdullah, N.M. Ghoniem, A Discrete Crack Element (DCE) Method for the Uniform Motion of General-Shape Crack Distributions in Finite Domains, Journal of the Mechanics and Physics of Solids, Vol. 203 (2025), 106235, doi:10.1016/j.jmps.2025.106235 Peer-reviewed
  3. M. J. Mohammad Fikry, Jason P. Mack, Faizan Mirza, Niken Prasasti Martono, K.T. Tan, Vladimir Vinogradov and Shinji Ogihara, A machine learning-driven approach to predict mechanical degradation associated with matrix cracks in fiber-reinforced composite laminates, Next Materials, Vol. 9 (2025), 101209, doi:10.1016/j.nxmate.2025.101209 Peer-reviewed
  4. M. J. Mohammad Fikry, Keisuke Iizuka, Hayato Nakatani, Satoru Yoneyama, Vladimir Vinogradov, Jun Koyanagi and Shinji Ogihara, Suppression of Delamination in CFRP Laminates with Ply Discontinuity Using Polyamide Mesh, Journal of Composites Science, Vol. 9 (2025), 414, doi:10.3390/jcs9080414 Peer-reviewed
  5. M. J. Mohammad Fikry, Yutaro Arai, Ryo Inoue, Vladimir Vinogradov, KT Tan, Shinji Ogihara, Damage behavior in unidirectional CFRP laminates with ply discontinuity, Applied Composite Materials, 32(4) (2025), pp. 1481–1499. Peer-reviewed
  6. M. J. Mohammad Fikry, Nobuo Terashi, Koji Koizumi, Shinji Ogihara, Inhibition of interlaminar damage in CFRP laminates by inserting non-woven carbon fiber interlaminar reinforced tissue, Adv. Compos. Mater. (2025), Advance online. Peer-reviewed
  7. G. Okuma, T. Shimizugawa, S. Ozaki, T. Osada, S. Machida, Y. Arai, R. Inoue, Strength-limiting defects evolved from heterogeneities during the sintering of high-purity submicron alumina powder, Journal of the European Ceramic Society (2025), 117679. Peer-reviewed
  8. Mizuki Tsuganezawa, Yutaro Arai, Ryo Inoue, Thermodynamic Analysis on Complex Oxides Formed by Aerodynamic Heating for Ultrahigh-Temperature Ceramic Matrix Composites, J. Compos. Sci. 9(2) (2025), 87, doi:10.3390/jcs9020087 Peer-reviewed
  9. Y. Li, H. Shiozaki, R. Inoue, Jun Koyanagi, Numerical simulation of fatigue damage in CFRP cables under cyclic loading using an entropy-based approach, Composite Structures, Vol. 371 (2025), 119538. Peer-reviewed
  10. Mallory Parker, Sawane Norimatsu, Ryosuke Matsuzaki, Dwayne Arola, Improving fused filament fabrication of continuous fiber composites using a novel filament design, Journal of Materials Research and Technology, 37 (2025), pp. 231–241. Peer-reviewed
  11. Gen Watanabe, Issei Ogawa, Hiroshi Ikaida, Mitsuo Matsunaga, Ryosuke Matsuzaki, Integration of composite-structure forming and optical fiber sensing using tool-change 3D printing, Composites Part C, 17 (2025), 100611. Peer-reviewed
  12. Junro Sano, Ryosuke Matsuzaki, Improving the accuracy of carbon nanotube yarn 3D printing using machine learning, Composites Part C, 18 (2025), 100644. Peer-reviewed
  13. Yuuki Okada et al., Development of stress intensity factor equations ..., Int. J. Pressure Vessels Piping 214 (2025), 105387, doi:10.1016/j.ijpvp.2024.105387 Peer-reviewed
  14. Yasuhiro Tasaka, Ryosuke Matsuzaki, Crystallization behavior of thermoplastic resins near fibers ..., Addit. Manuf. 98 (2025), 104633. Peer-reviewed

2024

  1. 小柳潤,中藏鮎子,高村円璃,武田真一,森本哲也,後加工によるCFRPシングルラップ接合強度向上に関する数値シミュレーション,日本複合材料学会誌,Vol. 50 (2024), pp. 171–176. (in Japanese) Peer-reviewed
  2. Atsuo Hirano, Yosuke Tsunemoto and Akiyuki Takahashi, Atomic thermal fluctuation reduction method for robust local lattice structure identification in finite-temperature molecular dynamics, Modeling and Simulation in Materials Science and Engineering, Vol. 32 (2024), 065018, doi:10.1088/1361-651X/ad5dd4 Peer-reviewed
  3. A. Takahashi, T. Kasuya, N.M. Ghoniem, Stress field and interaction forces between dislocations and precipitate distributions, Int. J. Numer. Methods Eng., Vol. 125 (2024), e7468, doi:10.1002/nme.7468 Peer-reviewed
  4. Yutaro Arai, Manami Saito, Akane Samizo, Ryo Inoue, Keishi Nishio, Yasuo Kogo, Material design using calculation phase diagram for refractory high-entropy ceramic matrix composites, Int. J. Appl. Ceram. Technol. 21 (2024), 2702–2711, https://doi.org/10.1111/ijac.14688 Peer-reviewed
  5. G. Okuma, R. Usukawa, ... F. Wakai, Evolution of microstructure and sintering of tape-cast alumina laminates observed by synchrotron X-ray multi scale tomography, Ceram. Int. 50(19C) (2024), 37402–37411, https://doi.org/10.1016/j.ceramint.2024.04.009 Peer-reviewed
  6. Hiroshi Okada, Takahiko Gouda, Koichiro Arai, Redefined three-dimensional J-integral as finite strain elastic-plastic crack parameter, Theor. Appl. Fract. Mech. 130 (2024), 104310, doi:10.1016/j.tafmec.2024.104310 Peer-reviewed
  7. Satoyuki Tanaka et al., A benchmark elastic–plastic finite element analysis ..., Int. J. Pressure Vessels Piping 209 (2024), 105182, https://doi.org/10.1016/j.ijpvp.2024.105182 Peer-reviewed
  8. Yuhi Tsuchiyama, Yusuke Sunaoka, Hiroshi Okada, Yuto Otoguro, A method of overlaying models of isogeometric analysis (IGA) ..., Mech. Eng. J. Vol. 11 (2024), Article ID 24-00173, https://doi.org/10.1299/mej.24-00173 Peer-reviewed
  9. Yuichiro Yuge, Ryosuke Matsuzaki, High-throughput in-situ mechanical evaluation and parameter optimization for 3D printing of continuous carbon fiber composites, Compos. Part C 15 (2024), 100536. Peer-reviewed
  10. Satoru Yoshimori, Jun Koyanagi, Ryosuke Matsuzaki, Efficient prediction of fatigue damage analysis of carbon fiber composites using multi-timescale analysis and machine learning, Polymers 16(23) (2024), 3448. Peer-reviewed
  11. Daisuke Aoki et al., “Thermal curing of epoxy resins at lower temperature using 4-(methylamino)pyridine derivatives ...”, J. Polym. Sci. (2024), 62, 4406–4415. Peer-reviewed
  12. Yuya Tanaka et al., “Rational design of a room-temperature curing method ...”, J. Polym. Sci. (2024), 62, 5497–5506. Peer-reviewed

Book / Proceedings

  1. Jun Koyanagi, Durability of carbon fiber reinforced plastics, CRC Press, Taylor & Francis Group (2024).
  2. Yuki Komiya, Yasuo Kogo, Yutaro Arai, Design of refractory high entropy alloys ..., MRS Advances 9 (2024) 815–821.
  3. Rina Ono, Kenjiro Tsukamoto, Yutaro Arai, Yasuo Kogo, Experimental and analytical evaluation of an aerospace thermal protection system: Carbon monolith ablator, MRS Advances 9 (2024) 822–829.

Public Relations

  1. 有光晃二,西野孝,辻井敬亘,扇澤敏明,「材料系4学会トップ座談会 コラボレーションで新たな可能性拓く」,化学工業日報,(2024年11月6日) (in Japanese)

Award

  1. 井上 遼,学校法人東京理科大学 優秀研究者奨励賞(2024年3月27日) (in Japanese)