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西北工业大学 国内
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科研成果
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王 俊东
Professor
力学与土木建筑学院
h-index
401
引用
12
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
2017
2025
每年的科研成果
综述
指纹
网络
科研成果
(48)
相似简介
(6)
指纹
深入其中 Jundong Wang 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
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Material Science
Aluminum Alloy
8%
Anisotropy
9%
Crack Growth
5%
Crack Initiation
13%
Crack Propagation
15%
Creep
41%
Creep Property
12%
Crystal Orientation
11%
Crystal Plasticity
35%
Damage Evolution
7%
Elastic Moduli
7%
Fatigue Behavior
68%
Fatigue Crack
25%
Fatigue Crack Growth
5%
Fatigue Damage
14%
Fatigue of Materials
74%
Fiber Optic Sensor
5%
Film
7%
Finite Element Method
12%
Finite Element Modeling
5%
Finite Strain
5%
High Entropy Alloys
5%
High-Cycle Fatigue
11%
Intermetallics
5%
Laser Powder Bed Fusion
5%
Low-Cycle Fatigue
45%
Microstructural Analysis
8%
Multi-Scale Simulation
5%
Ni-based Single Crystal Superalloy
14%
Nickel-Based Superalloys
5%
Nucleation
11%
Plasticity Theory
13%
Polycrystal
5%
Random Vibration
15%
Scanning Electron Microscopy
7%
Shear Strength
5%
Single Crystal
53%
Small Crack
6%
Solder Joint
23%
Solidification
8%
Superalloys
100%
Surface (Surface Science)
12%
Tensile Loads
11%
Tensile Strain
5%
Thermal Barrier Coating
5%
Ti-6Al-4V
5%
Titanium Alloy
5%
Ultimate Tensile Strength
6%
Yield Stress
5%
Young's Modulus
5%
Engineering
Aero-Engines
7%
Aeroengine
7%
Aging Effect
9%
Aging Temperature
18%
Anisotropic
12%
Constitutive Model
28%
Crack Initiation
11%
Creep
19%
Crystal Orientation
7%
Cycle Fatigue
11%
Damage Evolution
6%
Engineering
9%
Equivalent Initial Flaw Size
11%
Experimental Result
7%
Failure Mode
6%
Fatigue Analysis
7%
Fatigue Behavior
43%
Fatigue Crack Growth
8%
Fatigue Crack Nucleation
11%
Fatigue Damage
10%
Fatigue Life
59%
Fatigue Life Prediction
14%
Fatigue Performance
12%
Fiber Optic Sensor
7%
Finite Element Simulation
7%
Fracture Surface
8%
High Cycle Fatigue
23%
Initiation of Crack
11%
Joints (Structural Components)
23%
Laws of Thermodynamics
8%
Learning System
8%
Life Prediction
21%
Life Prediction Model
26%
Low Cycle Fatigue
42%
Mechanical Fatigue Test
12%
Notched Specimen
14%
Plasticity Theory
10%
Random Vibration
11%
Remaining Life
11%
Room Temperature
7%
Signal Intensity
7%
Single Crystal Superalloys
44%
Stress Amplitude
11%
Stress Triaxiality
8%
Temperature Condition
7%
Temperature Range
9%
Tensile Loads
11%
Tensile Property
11%
Tensile Strain
7%
Test Result
6%