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Gears
100%
Cutoff frequency
88%
Torque
84%
Velocity control
49%
Controllers
20%
Kumazawa, H. ,
Hayashi, H. ,
Susuki, I. &
Utsunomiya, T. ,
2006 10月 ,
In: Composite Structures. 76 ,
1-2 ,
p. 73-81 9 p. 研究成果: Article › 査読
Carbon fiber reinforced plastics
100%
Laminates
83%
Permeability
73%
Cracks
61%
Gas permeability
20%
Hangai, Y. ,
Utsunomiya, T. ,
Kuwazuru, O. ,
Kitahara, S. &
Yoshikawa, N. ,
2015 ,
In: Materials. 8 ,
10 ,
p. 7161-7168 8 p. 研究成果: Article › 査読
Blowing agents
100%
blowing
91%
foams
75%
Foams
72%
plateaus
71%
Hangai, Y. ,
Yamaguchi, R. ,
Takahashi, S. ,
Utsunomiya, T. ,
Kuwazuru, O. &
Yoshikawa, N. ,
2013 4月 ,
In: Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science. 44 ,
4 ,
p. 1880-1886 7 p. 研究成果: Article › 査読
foams
100%
Tomography
97%
Foams
97%
Foam
92%
X rays
91%
Rajagopalan, U. M. ,
Wakumoto, R. ,
Endo, D. ,
Hirai, M. ,
Kono, T. ,
Gonome, H. ,
Kadono, H. &
Yamada, J. ,
2021 10月 ,
In: PLoS ONE. 16 ,
10 October , e0258973.
研究成果: Article › 査読
Lasers
100%
Music
37%
Light
23%
Seedlings
17%
Stuttering
15%
Utsunomiya, T. ,
Tahara, K. ,
Tanaka, T. ,
Watanabe, K. &
Ohika, T. ,
2001 ,
In: Nihon Kikai Gakkai Ronbunshu, A Hen/Transactions of the Japan Society of Mechanical Engineers, Part A. 67 ,
664 ,
p. 2002-2009 8 p. 研究成果: Article › 査読
Yield Point
100%
Yield stress
78%
Welds
69%
Cracks
58%
Steel
50%
Mobile robots
100%
Robots
47%
Communication
18%
Parallel algorithms
17%
Base stations
16%
Mobile robots
100%
Robots
40%
Communication
15%
Parallel algorithms
14%
Base stations
13%
Makabe, C. ,
Purnowidodo, A. ,
Sueyoshi, T. &
Utsunomiya, T. ,
2004 1月 ,
In: Journal of Testing and Evaluation. 32 ,
1 ,
p. 56-61 6 p. 研究成果: Article › 査読
Crack Propagation
100%
Fatigue crack propagation
73%
Crack propagation
61%
Strain
49%
Application
11%
Utsunomiya, T. ,
Ishii, H. ,
Makabe, C. &
Iida, K. ,
2000 ,
In: Nihon Kikai Gakkai Ronbunshu, A Hen/Transactions of the Japan Society of Mechanical Engineers, Part A. 66 ,
645 ,
p. 915-922 8 p. 研究成果: Article › 査読
Crack Initiation
100%
Crack initiation
63%
Crack propagation
55%
Strain
45%
Fatigue of materials
44%
Nomatsu, M. ,
Suganuma, Y. ,
Yui, Y. &
Uchimura, Y. ,
2015 ,
In: Journal of Robotics and Mechatronics. 27 ,
4 ,
p. 356-364 9 p. 研究成果: Article › 査読
Range finders
100%
Mobile robots
70%
Lasers
59%
Robots
40%
Data acquisition
13%
Strain gages
100%
oscillators
73%
sensor
67%
sensors
60%
strain gages
56%
Vibration measurement
100%
Wireless sensor networks
94%
Concrete buildings
49%
IEEE Standards
42%
Structural health monitoring
42%
Suzuki, M. ,
Iwase, S. ,
Koike, Y. &
Saeki, M. ,
2017 3月 ,
In: Japan Journal of Food Engineering. 18 ,
1 ,
p. 61-69 9 p. 研究成果: Article › 査読
Electrostatic separators
100%
Preserved Food
91%
Lettuce
90%
dried foods
84%
separators
71%
Electrostatic separators
100%
Electrodes
43%
Plastics
41%
Charged particles
11%
Polystyrenes
9%
Tanabe, Y. ,
Adachi, T. ,
Suzuki, K. M. ,
Akoshima, M. ,
Heguri, S. ,
Kawamata, T. ,
Ishii, Y. ,
Suzuki, T. ,
Watanabe, I. &
Koike, Y. ,
2014 7月 15 ,
In: journal of the physical society of japan. 83 ,
7 , 074707.
研究成果: Article › 査読
muons
100%
inhomogeneity
92%
magnetic fields
54%
transition temperature
43%
temperature
32%
Vibration measurement
100%
Wireless sensor networks
94%
Concrete buildings
49%
IEEE Standards
42%
Structural health monitoring
42%
Reflectometry
100%
Dielectric spectroscopy
86%
Coplanar
73%
Spectroscopy
72%
Probe
66%
Sari, D. P. ,
Asih, R. ,
Hiraki, K. I. ,
Nakano, T. ,
Nozue, Y. ,
Ishii, Y. ,
Hillier, A. D. &
Watanabe, I. ,
2021 12月 1 ,
In: Physical Review B. 104 ,
22 , 224506.
研究成果: Article › 査読
Fermi surface
100%
Superconducting Gap
88%
organic superconductors
61%
Superconducting materials
58%
Superconductor
50%
Hangai, Y. ,
Nakano, Y. ,
Utsunomiya, T. ,
Kuwazuru, O. &
Yoshikawa, N. ,
2017 2月 1 ,
In: Journal of Materials Engineering and Performance. 26 ,
2 ,
p. 894-900 7 p. 研究成果: Article › 査読
Steel pipe
100%
Extrusion
84%
Foams
83%
Foam
79%
Drop
75%
Hangai, Y. ,
Kubota, N. ,
Utsunomiya, T. ,
Kawashima, H. ,
Kuwazuru, O. &
Yoshikawa, N. ,
2015 ,
In: Materials Science and Engineering A. 639 ,
p. 597-603 7 p. 研究成果: Article › 査読
Aluminium Alloy
100%
foams
89%
Foams
87%
aluminum alloys
84%
Foam
82%
Hangai, Y. ,
Suto, S. ,
Utsunomiya, T. ,
Kawashima, H. ,
Kuwazuru, O. &
Yoshikawa, N. ,
2017 ,
In: Keikinzoku/Journal of Japan Institute of Light Metals. 67 ,
11 ,
p. 576-581 6 p. 研究成果: Article › 査読
Pore structure
100%
Pore Structure
76%
Porosity
69%
Compaction
68%
Aluminum
62%
Charged Material
100%
Welds
70%
Hydrogen
69%
Fracture toughness
47%
Embrittlement
38%
Tsunoda, K. ,
Suzuki, T. &
Asai, T. ,
1999 ,
In: Nihon Kikai Gakkai Ronbunshu, B Hen/Transactions of the Japan Society of Mechanical Engineers, Part B. 65 ,
636 ,
p. 2658-2665 8 p. 研究成果: Article › 査読
riblets
100%
supersonic nozzles
86%
Nozzles
52%
Mach number
40%
pitot tubes
31%
Radiation counters
100%
Leak detection
82%
Light scattering
72%
Light Scattering
58%
light scattering
46%
Porosity
100%
Aluminum
89%
Friction
80%
Aluminum oxide
74%
Pore size
44%
Utsunomiya, T. ,
Hangai, Y. &
Ozeki, Y. ,
2009 10月 ,
In: Nihon Kikai Gakkai Ronbunshu, A Hen/Transactions of the Japan Society of Mechanical Engineers, Part A. 75 ,
758 ,
p. 1334-1339 6 p. 研究成果: Article › 査読
Alumina
100%
Aluminum
78%
Friction
70%
Porosity
58%
Amount
43%
Utsunomiya, T. ,
Takahashi, K. ,
Hangai, Y. &
Kitahara, S. ,
2011 6月 ,
In: Materials Transactions. 52 ,
6 ,
p. 1263-1268 6 p. 研究成果: Article › 査読
Blowing agents
100%
Pore structure
94%
Die casting
93%
blowing
91%
Aluminium Alloy
83%
Pore structure
100%
Pore Structure
76%
Aluminum
62%
Friction
55%
Porosity
46%
UTSUNOMIYA, T. ,
ISHII, T. ,
OKU, H. &
WATANEBE, K. ,
1999 7月 15 ,
In: JSME International Journal,Ser.. 42 ,
p. 429-437 研究成果: Article › 査読
Utsunomiya, T. ,
Ishii, T. ,
Oku, H. &
Watanabe, K. ,
1999 ,
In: JSME International Journal, Series A: Mechanics and Material Engineering. 42 ,
3 ,
p. 429-437 9 p. 研究成果: Article › 査読
Brittleness
100%
Crack tips
92%
Cracks
61%
Experiments
19%
Shearing
19%
Microplastics
100%
Microplastic
91%
Lens Plant
86%
Seedlings
83%
Germination
77%
Hangai, Y. ,
Kato, H. ,
Utsunomiya, T. ,
Kitahara, S. ,
Kuwazuru, O. &
Yoshikawa, N. ,
2012 8月 1 ,
In: Materials Transactions. 53 ,
p. 1515-1520 研究成果: Article › 査読
Utsunomiya, T. ,
Tamura, K. I. ,
Hangai, Y. ,
Kuwazuru, O. &
Yoshikawa, N. ,
2010 3月 ,
In: Materials Transactions. 51 ,
3 ,
p. 542-547 6 p. 研究成果: Article › 査読
Pore structure
100%
Pore Structure
76%
friction
68%
Aluminum
62%
porosity
58%
Pore structure
100%
Pore Structure
76%
Aluminum
62%
Friction
55%
Porosity
46%
dampers
100%
Energy dissipation
68%
energy dissipation
64%
Damping
60%
damping
47%
Bidhar, S. ,
Kuwazuru, O. ,
Shiihara, Y. ,
Utsunomiya, T. ,
Hangai, Y. ,
Nomura, M. ,
Watanabe, I. &
Yoshikawa, N. ,
2015 9月 15 ,
In: Applied Mathematical Modelling. 39 ,
18 ,
p. 5707-5723 17 p. 研究成果: Article › 査読
Stress Concentration Factor
100%
Die castings
90%
Aluminum
80%
Casting
79%
Cavity
65%
Utsunomiya, T. ,
Yamaguchi, R. ,
Hangai, Y. ,
Kuwazuru, O. &
Yoshikawa, N. ,
2013 ,
In: Materials Transactions. 54 ,
7 ,
p. 1182-1186 5 p. 研究成果: Article › 査読
plateaus
100%
Porosity
91%
Aluminum
82%
porosity
77%
aluminum
73%
Yamada, J. ,
Arita, Y. ,
An, A. ,
Miura, Y. &
Takata, S. ,
2008 9月 ,
In: Nihon Kikai Gakkai Ronbunshu, B Hen/Transactions of the Japan Society of Mechanical Engineers, Part B. 74 ,
9 ,
p. 2034-2039 6 p. 研究成果: Article › 査読
Skin
100%
albedo
90%
Radiation
90%
Wavelength
67%
extinction
65%
Al-Mahdouri, A. ,
Baneshi, M. ,
Gonome, H. ,
Okajima, J. &
Maruyama, S. ,
2013 10月 ,
In: Solar Energy. 96 ,
p. 21-32 12 p. 研究成果: Article › 査読
Optical properties
100%
Greenhouses
98%
Radiative Heat Transfer
76%
Optical Property
58%
Optical Constant
58%
Lagrangian
100%
Numerical methods
54%
trajectory
48%
Trajectories
43%
Flow
40%
Sakaue, K. ,
Isawa, T. ,
Ogawa, T. &
Yoshimoto, T. ,
2012 10月 ,
In: Experimental Mechanics. 52 ,
8 ,
p. 1003-1008 6 p. 研究成果: Article › 査読
Indentation
100%
Fibers
63%
Composite materials
54%
Rigidity
26%
Finite element method
16%
Sato, Y. ,
Masumizu, S. ,
Sakaue, K. ,
Koyanagi, J. ,
Ohtani, A. &
Sakai, T. ,
2022 , (Accepted/In press)
In: Mechanics of Time-Dependent Materials. 研究成果: Article › 査読
Polybutenes
100%
Polyamides
78%
Polyamide
62%
Poisson Ratio
61%
Poisson ratio
49%
Thermoplastics
100%
Strain rate
91%
Polybutenes
76%
Strain
69%
Yield Point
57%