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フィンガープリント
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プロファイル
(75)
研究成果
(4847)
活動
(12)
受賞
(5)
フィンガープリント
機械工学部門が活動している研究トピックを掘り下げます。これらのトピックラベルは、この組織のメンバーの研究成果に基づきます。これらがまとまってユニークなフィンガープリントを構成します。
並べ替え順
重み付け
アルファベット順
Engineering
Surfaces
100%
Models
86%
Performance
78%
Characteristics
75%
Experiments
61%
Water
55%
Mechanisms
53%
Crack
52%
Measurement
51%
Fatigue Limit
44%
Steel
41%
Temperature
41%
Rotors
41%
Alloy
41%
Hydrogen Gas
39%
Development
34%
Properties
33%
Flame
32%
Simulation
32%
Applications
31%
Electrocatalyst
31%
Polymer Electrolyte Fuel Cell
30%
Fatigue Crack Growth
30%
Fatigue Strength
30%
Evaluation
28%
High Pressure
28%
Gas Diffusion Layer
28%
Experimental Result
28%
Design
27%
Actuators
27%
Joints (Structural Components)
26%
Microstructure
25%
Computer Simulation
25%
Anode
24%
Robot
24%
Fuel
23%
Defects
22%
Solid Oxide Fuel Cell
22%
Measurer
22%
Internals
21%
Fracture
20%
Prediction
20%
Crack Propagation
20%
Accuracy
20%
Gears
19%
Supports
19%
Catalyst
19%
Research
19%
Flow Rate
18%
Stability
18%
Austenitic Stainless Steel
18%
Reduction
18%
Environment
18%
Mixture
18%
Heat Transfer
18%
Stages
18%
Two Dimensional
18%
Hydrophobic
18%
Substrates
18%
Cycles
17%
Sensor
17%
Fatigue Crack Propagation
17%
Fatigue Crack
17%
Mechanical Fatigue Test
16%
Cavity
16%
Fiber
16%
Mechanical Properties
16%
Deformation
16%
Oil
15%
Flow Field
15%
Thickness
15%
Hydrophilic
15%
High Temperature
15%
Thermal Conductivity
15%
Heat Flux
14%
Metal Injection Moulding
14%
Fracture Surface
14%
Enhancement
14%
Density
14%
Solid Oxide Fuel Cells
14%
Strain
14%
Chemical Mechanical Polishing
13%
Body Force
13%
Equivalence Ratio
13%
Crack Growth Rate
13%
Correlation
13%
Impeller
13%
Degree of Freedom
13%
Reliability
13%
Aluminum Alloys
13%
Fluid
13%
Error
13%
Stress-Intensity Factor
12%
Feedforward
12%
Roughness
12%
Turbine
12%
Algorithm
12%
High Speed
12%
Cylinder
12%
Hybrid
11%
Physics
Model
92%
Hydrogen
88%
Speed
54%
Temperature
50%
Flames
47%
Pressure
45%
Combustion
44%
Region
44%
Performance
43%
Behavior
42%
Simulation
42%
Cracks
41%
Cavitation Flow
35%
Fatigue Crack
34%
Water
34%
Utilization
32%
Gases
31%
Rotation
29%
Steel
28%
Mixtures
27%
Actuators
27%
Vibration
26%
Air
26%
Alloy
26%
Liquids
26%
Frequencies
25%
Acoustics
25%
Stability
24%
Calculation
23%
Particle
23%
Ratios
23%
Diameters
22%
Manipulator
21%
Wear
21%
Value
21%
Probe
21%
Area
21%
Differences
21%
Eddy
21%
Evaluation
20%
Algorithms
19%
Thermal Conductivity
19%
Deformation
18%
Fatigue Test
18%
Vapor
18%
Heat Transfer
18%
Heat
18%
Validity
18%
Independent Variables
18%
Laser
18%
Increasing
17%
Droplet
17%
High Pressure
17%
Cooling
17%
Bubbles
17%
Boundaries
16%
Variations
16%
Volume
15%
Flow Velocity
15%
Controllers
14%
Fuel
14%
Joint
14%
Friction
14%
Pulses
14%
Plane
13%
Transients
13%
Flow Distribution
13%
Electrodes
13%
Shears
13%
Heating
13%
Fracture
12%
Crack Propagation
12%
Defects
12%
Correlation
12%
Environment
12%
Microstructure
12%
Boiling
12%
Growth
12%
Adhesion
12%
Oxygen
12%
Displacement
12%
Fatigue Crack Growth
12%
Nitrogen
12%
Diffusivity
11%
Tissue
11%
Grain Boundaries
11%
Crack Growth
11%
Degrees of Freedom
11%
Fibers
11%
Detonation
11%
Evaporation
11%
Numerical Analysis
11%
Cycles
10%
Metal
10%
Strength of Materials
10%
Sites
10%
Coefficients
10%
Substrates
10%
Impact
10%
Finite Element Modeling
10%
Material Science
Surface
92%
Material
73%
Spring Steel
49%
Crack
47%
Liquid Films
36%
Microstructure
35%
Fatigue Crack Growth
33%
Crack Tip
33%
Gas
32%
Cell
31%
Alloy
30%
Hydrogen Embrittlement
29%
Powder
27%
Strain
26%
Mechanical Strength
26%
Particle
24%
Air
23%
Friction
22%
Grain Boundary
22%
Fatigue of Materials
20%
Fatigue Crack
19%
Defect
19%
Mechanical Property
19%
Temperature
18%
Slurry
16%
Protective Atmosphere
16%
Metal
16%
Durability
15%
Crack Propagation
15%
Solution
14%
Austenitic Stainless Steel
14%
Ultimate Tensile Strength
14%
Ductility
14%
Coating
14%
Electrolyte
14%
Fracture Toughness
14%
Dislocation
13%
Catalyst
13%
Hydrogel
13%
Gel
13%
Polymer
13%
Liquid
12%
Tissue
12%
Cerium Oxide
12%
Density
11%
Solid
11%
Lubrication
11%
Hardness
11%
Desorption
11%
Crack Growth
11%
Finite Element Methods
11%
Nanoparticle
10%
Devices
10%
Aluminum Alloys
10%
Sensor
10%
Composite Material
10%
Plastics
10%
Ceramics
9%
Carbon Steel
9%
Strain Rate
9%
Fiber
9%
Morphology
9%
Stainless Steel
9%
Small Crack
9%
Thin Films
9%
Bearing
9%
Heat Transfer
9%
Fluid
8%
Fuel
8%
Martensite
8%
Paper
8%
Membrane
8%
Electrocatalysts
8%
Twinning
8%
Electrode
8%
Crack Initiation
8%
Droplet
8%
Sintering
8%
Magnesium Alloys
7%
Lubricant
7%
Ferrite
7%
Laser
7%
Protein
7%
Cathode
7%
Boiling Liquid
7%
Lubricating Grease
7%
Fatigue Behavior
7%
Nickel-Based Superalloys
7%
Glass
7%
Rubber
6%
Electron Backscatter Diffraction
6%
Water Vapor
6%
Contact Angle
6%
Intermetallics
6%
Growth Rate
6%
Electronics
6%
Tomography
6%
Contact Area
6%
Al2O3
6%
Finite Element Modeling
6%