Ichiro Ario

Last Updated :2024/05/07

Affiliations, Positions
Graduate School of Advanced Science and Engineering, Assistant Professor
Web Site
E-mail
mariohiroshima-u.ac.jp
Self-introduction
https://www.hiroshima-u.ac.jp/en/research/now/no20

Basic Information

Academic Degrees

  • Engineering Doctor, Nagaoka University of Technology

Educational Activity

  • [Bachelor Degree Program] School of Engineering : Cluster 4(Civil Engineering and Architecture) : Program of Civil and Environmental Engineering
  • [Master's Program] Graduate School of Advanced Science and Engineering : Division of Advanced Science and Engineering : Civil and Environmental Engineering Program
  • [Doctoral Program] Graduate School of Advanced Science and Engineering : Division of Advanced Science and Engineering : Civil and Environmental Engineering Program

In Charge of Primary Major Programs

  • Civil and Environmental Engineering

Research Fields

  • Interdisciplinary science and engineering;Applied physics;General applied physics
  • Informatics;Computing Technologies;High performance computing
  • Mathematical and physical sciences;Mathematics;Foundations of mathematics / Applied mathematics

Research Keywords

  • smart deployable structure
  • group theory & Nonlinear Mechanics

Affiliated Academic Societies

  • Euromech
  • Society of Steel structure

Educational Activity

Course in Charge

  1. 2024, Undergraduate Education, 2Term, Exercise of Strength of Materials
  2. 2024, Undergraduate Education, 3Term, Exercise of Structural Mechanics
  3. 2024, Undergraduate Education, Intensive, Exercises in Algorithm
  4. 2024, Undergraduate Education, 2Term, Experiments in Civil and Environmental Engineering
  5. 2024, Undergraduate Education, 3Term, Bridge and Earthquake-resistance
  6. 2024, Undergraduate Education, 3Term, Design of Infrastructures
  7. 2024, Undergraduate Education, Year, Graduation Thesis
  8. 2024, Graduate Education (Master's Program) , 1Term, Special Exercises on Civil and Environmental Engineering A
  9. 2024, Graduate Education (Master's Program) , 2Term, Special Exercises on Civil and Environmental Engineering A
  10. 2024, Graduate Education (Master's Program) , 3Term, Special Exercises on Civil and Environmental Engineering B
  11. 2024, Graduate Education (Master's Program) , 4Term, Special Exercises on Civil and Environmental Engineering B
  12. 2024, Graduate Education (Master's Program) , 1Term, Special Exercises on Civil and Environmental Engineering B
  13. 2024, Graduate Education (Master's Program) , 2Term, Special Exercises on Civil and Environmental Engineering B
  14. 2024, Graduate Education (Master's Program) , Academic Year, Special Study on Civil and Environmental Engineering

Research Activities

Academic Papers

  1. Numerical Analysis of Reinforcing Effect for Scissors-Type Bridge with Strut Members, APPLIED SCIENCES-BASEL, 12(24), 202212
  2. Influence Line-Based Design of Scissors-Type Bridge, APPLIED SCIENCES-BASEL, 12(23), 202212
  3. Investigation of Bridge Collapse Phenomena due to Heavy Rain Floods: Structural, Hydraulic, and Hydrological Analysis, JOURNAL OF BRIDGE ENGINEERING, 27(9), 20220901
  4. The block-diagonalization method applied to the stiffness matrix of solid finite elements by group theory., 1, 223-231, 19980401
  5. BLOCK-DIAGONALIZATION METHOD FOR SYMMETRIC STRUCTURES, 11(1), 1s-10s, 19940401
  6. BLOCK-DIAGONALIZATION METHOD FOR DYNAMIC PROBLEMS OF DAMPED SYMMETRIC STRUCTURES, PROCEEDINGS OF THE KOREA-JAPAN JOINT SEMINAR ON STEEL BRIDGES, 19940401
  7. BLOCK-DIAGONALIZATION ANALYSIS OF SYMMETRIC PLATES, International Journal of Solids and Structures, 29(22), 19920401
  8. Dynamic bifurcation behavior with the saddle point of homoclinic orbit, Proceedings of The First International Conference on Structural Stability and Dynamics, 1, 231-236, 20001201
  9. Dynamic Bifurcation Behavior with the Saddle Point of Homoclinic Orbit, International Conference on Structural Stability and Dynamics, 1, 231-236, 20000401
  10. ★, Homoclinic bifurcation and chaos attractor in elastic two-bar truss, International Journal of Non-Linear Mechanics, 4, 605-617, 20040601
  11. BUCKLING PATTERNS ANALYSIS OF THE SYMMETRIC STRUCTURES WITH THE FULLERENE, Int. Conf. on Comp. and Experimental Engineering and Sciences, 1446-1451, 20051201
  12. POST-BUCKLING ANALYSIS OF THE HIGH-SYMMETRIC CAGE STRUCTURES, INTERNATIONAL WORKSHOP ON COMPUTATIONAL MORPHOGENESIS, 20061001
  13. ★, Structural Stability of Multi-Folding Structures with Contact Problem, Journal of Sound and Vibration, 20090301
  14. Development of the prototype of a new emergency bridgebased on the concept of optimized structure, J. Struct. Engineering (JSCE), 20100301
  15. DYNAMIC ANALYSIS OF FOLDING PATTERNS FOR MULTI-FOLDING STRUCTURES, European Conference on Computational Mechanics Solids, Structures and Coupled Problems in Engineering, 443, 20060601
  16. STRUCTURAL STABILITY OF MULTI-FOLDING STRUCTURES WITH CONTACT PROBLEM, Proc. of EUROMECH Colloquium 484, CD, 20080901
  17. Local/Global Structural Instability Based on Multi-Folding Microstructure Theory, Proc. of 21st Canadian Congress of Applied Mechanics, 191-192, 20070601
  18. Elastic Instability for Pantographic Folding Structures Based on Multi-Folding Microstructure Theory, Proc. of Smart Structures and Materials, ECCOMAS THEMATIC CONFERENCE, CD, 20070901
  19. LOCAL/GLOBAL STRUCTURAL INSTABILITY FOR THE PANTOGRAPHIC TRUSS STRUCTURES, Proceedings of Engineering and Mathematics, 23-30, 20070701
  20. ★, Twist buckling and the foldable cylinder: an exercise in origami, INTERNATIONAL JOURNAL OF NON-LINEAR MECHANICS, 40(6), 833-843, 200507
  21. ★, Dynamic folding analysis for multi-folding structures under impact loading, JOURNAL OF SOUND AND VIBRATION, 308(3-5), 591-598, 20071204
  22. ★, Non-linear dynamic behaviour of multi-folding microstructure systems based on origami skill, INTERNATIONAL JOURNAL OF NON-LINEAR MECHANICS, 45(4), 337-347, 201005
  23. ★, Development of a prototype deployable bridge based on origami skill, AUTOMATION IN CONSTRUCTION, 32, 104-111, 201307
  24. ★, Multiple duffing problem in a folding structure with hill-top bifurcation, CHAOS SOLITONS & FRACTALS, 51, 52-63, 201306
  25. ★, Multiple Duffing problem in a folding structure with hilltop bifurcation and possible imperfections, MECCANICA, 49(8), 1967-1983, 201408
  26. Development of Prototype of Real-scaled MobilebridgeTM as a Smart Bridge for Dynamic Carriage Loadings,, Proc. of Dynamics, stability and control of flexible structure, 2013
  27. Structural Analysis and Experimental Study for realsized MB Travelable Vehicles, Proc. of 8th European Nonlinear Dynamics Conference, 8, USB, 20140706
  28. Theory and Design Study of a Full-Scale Scissors-Type Bridge, Journal of Bridge Engineering (ASCE), 20160317
  29. A New Type of Bridge, Mobilebridge® to Super-Quickly Recover a Bridge, World Journal of Engineering and Technology, 201510
  30. Study on the optimization of the reinforced scissor type bridge, Proc. of PCM-CMM, 2015, 319-320, 2015
  31. Mobilebridge® to Super-Quickly Recover a Bridge, World Journal of Engineering and Technology, 3(3), 170-176, 201510
  32. Experimental and numerical study of full-scale scissor type bridge, Automation in Construction, 201606
  33. Analysis of Symmetry-breaking and Multi-Bifurcation for Multi-folding Structures, Proc. of 24th International Congress of Theoretical and Applied Mechanics(ICTAM), 24, 201608
  34. STRUCTURAL ANALYSIS OF A TWO-UNIT OF SCISSORS STRUCTURE, Proc. of SOLID MECHANICS
  35. Experimental and numerical study of full-scale scissor type bridge, AUTOMATION IN CONSTRUCTION, 71, 171-180, 201611
  36. STRUCTURAL ANALYSIS OF A TWO-UNIT OF SCISSORS STRUCTURE, The proc. of SOLID MECHANICS(SOLMECH2016), 201609
  37. Study on the optimization of the reinforced scissor type bridge, The proc. of SOLID MECHANICS (SOLMECH2016), 201609
  38. Structural Mechanics for Reinforced Scissors Structures by Reinforced Struts, The proc. of Int. Conf. on Civil Environmental Engineering at Hiroshima, 201610
  39. Development of the scissors-type mobile bridge, Bridge Design and Dynamics Workshop, 201609
  40. Structural mechanics for reinforced scissors structures by reinforced struts, the proc. of the Third Australasia and South East Asia Conference in Structural Engineering and Construction (ASEA- ISEC-3), 201610
  41. A Study on Optimal Reinforcement of Scissor Type of Bridge with Additional Strut Members, The proc. of Int. Conf. on Civil Environmental Engineering at Hiroshima, 201610
  42. Deployable Mobile Bridge created from ORIGAMI, The full-paper of the 9th Int. Conf. on Bridge Maintenance, Safety and Management (IABMAS 2018), 9, 201807
  43. Optimization of reinforcement layout of scissor-type bridge using differential evolution algorithm, COMPUTER-AIDED CIVIL AND INFRASTRUCTURE ENGINEERING, 34(6), 523-538, 201906
  44. Analysis of multiple bifurcation behaviour for periodic structures, ARCHIVES OF MECHANICS, 72(4), 283-306, 2020
  45. ★, Discrete dynamic equilibrium model for a complex problem of flutter interactions, CHAOS SOLITONS & FRACTALS, 141, 202012
  46. ★, Structural analysis of a scissor structure, BULLETIN OF THE POLISH ACADEMY OF SCIENCES-TECHNICAL SCIENCES, 68(6), 1319-1332, 202012
  47. Smart design of coupling scissors-type bridge, STRUCTURES, 30, 206-216, 202104
  48. Topological optimum shape of a fundamental module of the periodic structure and cantilever bridge, J. of Structural engineering, 67A

Publications such as books

  1. 2024/03/31, Application of Group Theory to Symmetric Structures, Ario and Zawidzki show readers how to handle symmetric structures in engineering using group-theoretic bifurcation theory as a mathematical tool for the finite element analysis of symmetric structures. They guide the reader from the initial mathematical concepts through to application examples. Readers will gain a solid theoretical grounding in group theory and strong working knowledge of the use of computational frameworks for structural analysis using mathematical representations of symmetry and physical symmetry. First, the authors elaborate an outline of symmetric structures in engineering and then describe the representation of symmetry and group theory. They then discuss block diagonalization theory and finite element analysis models. This provides readers with the base knowledge needed for Chapter 6, which is based on numerical analysis examples of invariant, static FEM model systems and dynamic model systems of the dihedral group. This unique approach is a vital method that will enable readers to reduce the time and computation needed for accurate analysis so that they can better design such structures. The focus on finite element methods and practical examples and case studies throughout provides a strong practical foundation for anyone studying or working in this field. The book is a valuable resource for undergraduate and postgraduate students on various courses such as civil and mechanical engineering, architecture, structural engineering, applied mathematics, and physics. Additionally, it describes vital practical solutions for structural engineers, structural system manufacturers, fabricators of prefabricated elements, and developers of computational mechanics and so on., Symmetry/ Structure/ Finte Element Method/ Group Theory, CRC press, 2024, 202403, Scholarly Book, Joint work, 英語, Ichiro Ario, Machi Zawidzki, 9781032670171, 200

Patented

  1. Patent, 6502004, 2019/03/29
  2. Patent, 2019/08/07
  3. Patent, 3336387, 2002/08/09
  4. Patent, 4769976, 2011/07/01
  5. Patent, 4967117, 2012/04/13
  6. Patent, 5008035, 2012/06/08
  7. Patent, 5013469, 2012/06/15
  8. Patent, 5463503, 2014/01/31
  9. Patent, 5574150, 2014/07/11
  10. Patent, 5713423, 2015/03/20
  11. Patent, 5912541, 2016/04/08
  12. Patent, 6068681, 2017/01/06
  13. Patent, ZL201480039964.5, 2017/03/15
  14. Patent, 3147407, 2019/08/07

Social Activities

History as Peer Reviews of Academic Papers

  1. 2022, Special Issue "Advanced Technologies for Bridge Design and Construction" Applied Sciences in MDPI, Chief editor, Editor, 11