跳至主導覽
跳至搜尋
跳過主要內容
國立成功大學 首頁
English
中文
在 國立成功大學 搜尋內容
首頁
概要
研究單位
研究成果
專案
學生論文
設備
獎項
活動
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
4787
引文
39
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
(304)
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
Material Science
Surface (Surface Science)
100%
Nanoindentation
81%
Film
51%
Carbon Nanotube
42%
Lubrication
39%
Thin Films
34%
Nanotube
33%
Indentation
31%
Finite Element Method
27%
Diamond-Like Carbon
24%
Surface Roughness
23%
Chemical Mechanical Planarization
22%
Nanoparticle
20%
Young's Modulus
17%
Contact Area
17%
Grain Size
16%
Composite Material
15%
Amorphous Carbon
15%
Gallium Nitride
15%
Nanohardness
14%
Density
12%
Hydrodynamics
12%
Rough Surface
12%
Thermal Stability
12%
Tribological Performance
12%
Plastic Deformation
12%
Materials Property
12%
Diamond
11%
Strain Rate
10%
Atomic Force Microscopy
10%
Titanium Dioxide
10%
Diamond Like Carbon Films
10%
Residual Stress
10%
Silicon
10%
Rheology
9%
Carbon Films
9%
Silicon Carbide
9%
Inconel 718
9%
Sliding Friction
9%
Ductile Fracture
9%
Raman Spectroscopy
9%
Nanocrystalline
9%
Transmission Electron Microscopy
9%
Oxide Compound
8%
Elasticity
8%
Hydrodynamic Lubrication
8%
Selective Laser Melting
8%
Surface Property
8%
Nanotribology
7%
Scanning Electron Microscopy
7%
Engineering
Strain Rate
39%
Thin Films
31%
Chemical Mechanical Polishing
28%
Plastic Deformation
24%
Indentation
23%
Nanotube
23%
Carbon Nanotube
22%
Contact Area
19%
Nanoscale
18%
Metal Forming
18%
Intensity Factor
18%
Boundary Value
18%
Abrasive Particle
17%
Nanohardness
16%
Aerostatic Bearing
15%
Bonding Wire
15%
Equivalent Strain
15%
Roughness Effect
14%
Experimental Result
14%
Surface Friction
14%
Diamond-Like Carbon
14%
Height Distribution
14%
Fluid Viscosity
14%
Atomistic Simulation
14%
Surface Topography
13%
Surface Height Distribution
13%
Microcontact
13%
Velocity Field
13%
Mixed Lubrication
13%
Degree of Freedom
12%
Orifice
12%
Straightness
12%
Finite Element Formulation
12%
Measurement System
12%
Numerical Method
11%
Amorphous Carbon
11%
Plane Strain
11%
Nanometre
11%
Axisymmetric
11%
Good Agreement
11%
Simulation Result
11%
Young's Modulus
10%
Ductile Fracture
10%
Discharge Coefficient
9%
Cold Rolling
9%
Atomic Force Microscopy
9%
Temperature Rise
9%
Journal Bearing
9%
Material Removal Rate
9%
Hydrodynamics
9%
Keyphrases
Nanoindentation
25%
Chemical Mechanical Polishing
12%
Indentation Depth
10%
Yield Criterion
9%
Atomic Model
9%
Slide Bearing
9%
Height Distribution
9%
Finite Element Formulation
9%
Strain Rate Intensity Factor
9%
Sliding System
9%
Mechanical Properties
8%
Microcontact
8%
Atomistic Simulation
7%
Numerical Results
7%
Tribological Performance
7%
Material Properties
7%
Abrasive Particles
7%
Material Removal Rate Model
7%
Grainflow
7%
Atomic Scale
7%
Asperity Contact
7%
Frictional Interface
7%
Nanohardness
7%
Slider
7%
Equivalent Strain
6%
Mass Sensor
6%
Tribological Analysis
6%
Contact Behavior
6%
Cu(111)
6%
Inherent Orifice
6%
Elliptical Asperity
6%
Aerostatic Bearing
6%
Finite Width
6%
Orifice Restrictor
6%
Tribological Characteristics
6%
Tension Test
6%
Stiffness
6%
Material Removal Rate
6%
Nanoindentation Test
6%
Polishing Process
5%
Running-in Wear
5%
Metal Forming Process
5%
Slurry
5%
Legendre Collocation Method
5%
Nonlinear Finite Element
5%
Force Field
5%
Non-Gaussian
5%