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Taheri Farid
Associate Professor
Dalhousie University
,
Mathematics
电子邮件
TF955000
dal
ca
网站
https://www.scopus.com/authid/detail.url?authorId=35591955000
h-index
h10-index
h5-index
4891
引用
38
H-指数
根据储存在 Pure 的刊物以及来自 Scopus 的引用文献数量计算
1148
引用
17
H-指数
根据储存在 Pure 的刊物以及来自 Scopus 的引用文献数量计算
279
引用
11
H-指数
根据储存在 Pure 的刊物以及来自 Scopus 的引用文献数量计算
1987 …
2023
每年的科研成果
综述
指纹
网络
科研成果
(240)
新闻 / 媒体
(2)
相似简介
(6)
指纹
深入其中 Taheri Farid 为活跃的研究主题。这些主题标签来自此人的成果。它们共同形成唯一的指纹。
分类
加权
按字母排序
Material Science
Finite Element Method
100%
Bonded Joint
94%
Magnesium Alloy
48%
Reinforced Plastic
46%
Mechanical Strength
43%
Piezoelectricity
42%
Delamination
39%
Residual Stress
36%
Polymer Composite
30%
Nanoparticle
27%
Fatigue Crack Growth
26%
Sintering
26%
Nanocomposites
24%
Epoxy
23%
Aluminum
23%
Graphene
23%
Fatigue Crack
22%
Magnesium
22%
Laminated Composite
22%
Ceramic Composite
20%
Finite Element Modeling
18%
Density
17%
Glass Fiber
17%
Crack Propagation
17%
Fracture Toughness
16%
Reinforced Composite
15%
Shape Memory Effect
15%
Laminated Plate
15%
Static Loading
15%
Stress Concentration
15%
Materials Property
15%
Aluminum Oxide
15%
Mechanical Property
15%
Mechanical Testing
12%
Hot Pressing
11%
Scanning Electron Microscopy
11%
Impact Loads
11%
Fatigue of Materials
11%
Stainless Steel
11%
Carbon Fiber Reinforced Plastics
11%
Corrosion
11%
Effect of Strain
10%
Glass Fiber Reinforced Plastics
10%
Glass-Fiber Reinforced Plastic
10%
Elasticity
10%
Creep
10%
Residual Strength
10%
Crack Tip
9%
Plastic Deformation
9%
Elastic Moduli
9%
Engineering
Adhesively Bonded Joint
50%
Fibre Metal Laminate
46%
Finite Element Method
45%
Buckling
43%
Delamination
41%
Joints (Structural Components)
36%
Empirical-Mode Decomposition
29%
Adhesive Joints
25%
Energy Engineering
24%
Experimental Investigation
24%
Parametric Study
24%
Piezoelectric
23%
Fiber-Reinforced Polymer
23%
Residual Stress
21%
Damage Detection
19%
Stress Ratio
18%
Sintering
18%
Fatigue Crack Growth
17%
Elevated Temperature
17%
Health Monitoring
17%
Bolted Joints
16%
Composite Beam
16%
Adhesive Layer
16%
Fatigue Response
16%
Compressive Loading
15%
Impact Response
15%
Nanoparticle
15%
Laminated Composite Plate
15%
Hybrid Composite
15%
Constant Amplitude
14%
Experimental Result
13%
Glass Fibre-Reinforced Plastic
13%
Crack Propagation
12%
Tensiles
12%
Offshore Pipelines
12%
Overlap Length
12%
Quadrature Method
12%
Buckling Capacity
11%
Retardation
11%
Finite Element Modeling
11%
Impact Loads
11%
Nanocomposite
11%
Progression
10%
Steel Pipe
10%
Impact Toughness
10%
Fatigue Crack Propagation
10%
Pipe Joints
10%
Flange Joint
10%
Health Monitoring System
10%
Piezoceramics
10%
Keyphrases
Residual Stress
18%
Elevated Temperature
16%
Laminated Composites
16%
Buckling Response
15%
3D Fiber-metal Laminates
15%
Reinforced
15%
Finite Element Method
14%
Delamination
13%
E-glass Epoxy
12%
Empirical Mode Decomposition
12%
Processing Stress
12%
Water Medium
10%
Finite Element Verification
10%
Acidic Medium
10%
Bioadhesive
10%
Adhesively Bonded Joints
10%
Strain Concentration Factor
10%
Ceramic Matrix Composites
10%
Steel Plate
10%
Fatigue Crack Growth Rate
10%
High Strength Linepipe
10%
Fiber-reinforced Polymer Composites
8%
Buckling Capacity
8%
Notch Tip
8%
Load Capacity
8%
Computational Investigation
8%
Fatigue Crack Propagation
7%
Variable Amplitude Loading
7%
Laser Doppler Vibrometer
6%
Elastic Properties
6%
AM60 Alloy
6%
High Pressure Die Casting
6%
Stress Intensity Factor
6%
AM60 Magnesium Alloy
6%
Glass Fiber Reinforced Plastic
6%
Stress Ratio
6%
Energy Absorption Capacity
6%
Stiffened Plate
6%
Concrete Coated pipeline
6%
Strain Concentration
6%
Field Joint
6%
Hybrid Composites
6%
Adhesive Joints
6%
Viscoelastic Parameters
6%
Constant Amplitude Loading
5%
Decomposition Energy
5%
Energy-based Damage Index
5%
Steel pipe
5%
Fatigue Effect
5%
Dissimilar Materials
5%