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查看斯高帕斯 (Scopus) 概要
鄭 友仁
教授
生物醫學工程學系
https://orcid.org/0000-0001-6787-1538
電話
886 6 2757575 ext 63419 or 31308
電子郵件
imeyrj
gs.ncku.edu
tw
h-index
4403
引文
37
h-指數
按照存儲在普爾(Pure)的出版物數量及斯高帕斯(Scopus)引文計算。
1984 …
2025
每年研究成果
概覽
指紋
網路
專案
(6)
研究成果
(300)
類似的個人檔案
(6)
指紋
查看啟用 Yeau-Ren Jeng 的研究主題。這些主題標籤來自此人的作品。共同形成了獨特的指紋。
排序方式
重量
按字母排序
Engineering & Materials Science
Lubrication
92%
Nanoindentation
84%
Friction
79%
Plastics
65%
Wear of materials
56%
Molecular dynamics
54%
Chemical mechanical polishing
49%
Surface roughness
48%
Strain rate
45%
Temperature
44%
Mechanical properties
43%
Nanotubes
41%
Carbon
36%
Indentation
35%
Plastic deformation
34%
Thin films
34%
Particle size
31%
Polishing
30%
Diamonds
29%
Oils
28%
Lubricants
26%
Copper
26%
Substrates
25%
Computer simulation
25%
Metal forming
24%
Gallium nitride
23%
Abrasives
23%
Film thickness
22%
Hardness
21%
Amorphous carbon
21%
Carbon films
21%
Characterization (materials science)
21%
Cold rolling
20%
Powders
20%
Boundary value problems
20%
Nanohardness
20%
Fluids
20%
Diamond like carbon films
19%
Ball bearings
19%
Nanocapsules
19%
Materials properties
19%
Orifices
18%
Viscosity
18%
Wire
18%
Residual stresses
18%
Surface topography
17%
Elastic moduli
17%
Hot Temperature
17%
Chemical Compounds
Lubrication
100%
Wear
53%
Surface
52%
Bearing
49%
Polishing
48%
Liquid Film
46%
Flow
43%
Simulation
38%
Force
37%
Plastic Deformation
32%
Surface Roughness
31%
Pressure
26%
Carbon Nanotube
26%
Carbon Atom
25%
Friction Coefficient
25%
Nanotube
23%
Molecular Dynamics
22%
Abrasive
22%
Cold Rolling
21%
Plastic Property
20%
Heat Transfer
19%
Piston Ring
19%
Tension
18%
Velocity
16%
Hydrodynamics
16%
Mechanics
15%
Composite Material
14%
Extrusion
13%
Nitride
13%
Amorphous Material
13%
Heat
13%
Residual Stress
13%
Elastic Deformation
12%
Diamond
12%
Nanocapsule
12%
Grain Size
12%
Additive
12%
Young's Modulus
12%
Shear Stress
12%
Energy
11%
Microelectronics
11%
Raman Spectroscopy
11%
Coalescence
11%
Shear
11%
Transfer Coefficient
11%
Strength
10%
Pressure Drop
10%
Physics & Astronomy
lubrication
76%
nanoindentation
57%
plastics
39%
polishing
36%
friction
33%
sliding
30%
carbon
28%
strain rate
27%
plastic properties
25%
molecular dynamics
25%
carbon nanotubes
25%
plane strain
24%
aerostatics
24%
mechanical properties
23%
surface roughness
21%
chutes
20%
indentation
20%
abrasives
19%
plastic deformation
18%
boundary lubrication
18%
temperature
18%
diamonds
18%
simulation
18%
boundary value problems
17%
lubricants
17%
coefficient of friction
16%
thin films
16%
performance
16%
copper
16%
hollow
16%
residual stress
15%
orifices
15%
wire
15%
journal bearings
15%
nanotubes
14%
oils
14%
machining
13%
hardness
13%
Inconel (trademark)
13%
Bauschinger effect
13%
unloading
12%
ball bearings
12%
stress distribution
12%
cold rolling
12%
plane stress
12%
characterization
11%
roughness
11%
high speed
11%
wafers
10%
surface roughness effects
10%