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Fingerprint Dive into the research topics where Naoki Takano is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

Homogenization method Engineering & Materials Science
homogenizing Physics & Astronomy
Composite materials Engineering & Materials Science
Microstructure Engineering & Materials Science
Bone Engineering & Materials Science
Finite element method Engineering & Materials Science
Stress analysis Engineering & Materials Science
Stress concentration Engineering & Materials Science

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Research Output 1987 2019

  • 1247 Citations
  • 18 h-Index
  • 97 Article
  • 8 Conference contribution

First-order perturbation-based stochastic homogenization method applied to microscopic damage prediction for composite materials

Hoang, T. D. & Takano, N., 2019 Mar 5, In : Acta Mechanica. 230, 3, p. 1061-1076 16 p.

Research output: Contribution to journalArticle

Homogenization method
Composite materials
Coatings
Fiber reinforced plastics
Nonlinear analysis

Study on compressive property of aluminum alloy lattice structure additively manufactured by 3d printing technology

Takano, N., Takizawa, H., Ito, K., Odaka, K., Matsunaga, S. & Abe, S., 2019 Apr 1, In : Zairyo/Journal of the Society of Materials Science, Japan. 68, 4, p. 351-357 7 p.

Research output: Contribution to journalArticle

Open Access
assurance
Quality assurance
printing
aluminum alloys
Printing

Biomechanical analysis of likelihood of optic canal damage in peri-orbital fracture

Nagasao, T., Morotomi, T., Kuriyama, M., Tamai, M., Sakamoto, Y. & Takano, N., 2018 Jan 1, In : Computer Assisted Surgery. 23, 1, p. 1-7 7 p.

Research output: Contribution to journalArticle

Orbital Fractures
Lacrimal Apparatus
Finite Element Analysis
Orbit
Canals
1 Citation (Scopus)
Homogenization method
Composite materials
Finite element method
Mechanical properties
Microstructure
5 Citations (Scopus)

Influence of anisotropic bone properties on the biomechanical behavior of the acetabular cup implant: a multiscale finite element study

Nguyen, V. H., Rosi, G., Naili, S., Michel, A., Raffa, M. L., Bosc, R., Meningaud, J. P., Chappard, C., Takano, N. & Haiat, G., 2017 Aug 3, (Accepted/In press) In : Computer Methods in Biomechanics and Biomedical Engineering. p. 1-14 14 p.

Research output: Contribution to journalArticle

Bone
Tissue
Tomography
Materials properties
Stiffness