跳到主要导航
跳到搜索
跳到主要内容
北京理工大学 首页
English
中文
首页
师资队伍
研究单位
科研成果
奖项
按专业知识、名称或附属进行搜索
查看 Scopus 资料
王 扬卫
材料学院
h-index
2382
引用
29
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
2005
2024
每年的科研成果
概览
指纹图谱
合作网络
科研成果
(148)
相似学者
(45)
指纹图谱
深入其中 Yangwei 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
按字母排序
Material Science
Strain Rate
100%
Mechanical Strength
95%
Magnesium Alloys
61%
Flexural Strength
59%
Heat Treatment
54%
Compressive Strength
49%
Magnesium Alloy
49%
Aluminum Alloys
45%
Ceramic Composite
44%
Mechanical Property
41%
Yield Stress
36%
Titanium Alloys
35%
Fracture Toughness
33%
Bulk Metallic Glass
32%
Scanning Electron Microscopy
32%
Silicon Carbide
30%
Dynamic Loads
30%
Sintering
30%
Tungsten
28%
Silicon Nitride
27%
Composite Structure
26%
Oxidation Reaction
26%
Finite Element Method
26%
Density
25%
Ti-6Al-4V
24%
Ultimate Tensile Strength
23%
Composite Material
22%
Adiabatic Shear Band
22%
Tensile Property
21%
Ceramic Armor
21%
Equal Channel Angular Extrusion
20%
Amorphous Alloys
20%
Lattice Material
20%
Amorphous Metal
20%
Fracture Behavior
19%
Matrix Composite
19%
Plastic Deformation
19%
X-Ray Diffraction
17%
Grain Boundary
17%
Crystal Structure
16%
Aluminum
16%
Impact Loads
16%
Impact Resistance
16%
Carbide
15%
Indentation
15%
Elastomer
15%
Debonding
15%
Stress Concentration
14%
Grain Refinement
14%
Grain Size
13%
Engineering
Microstructure
72%
High Strain Rate
52%
Strain Rate
44%
Heat Treatment
33%
Computer Simulation
26%
Compressive Strength
26%
Dynamic Loads
25%
Adiabatic Shear Band
24%
Energy Engineering
23%
Split Hopkinson Pressure Bar
23%
Infiltration Pressure
22%
Ti-6al-4v
20%
Deformation Behavior
19%
Yield Strength
17%
Experimental Result
16%
Bulk Metallic Glass
15%
Equal Channel Angular Pressing
15%
Steel Core
15%
Pure Aluminum
14%
Dynamic Behavior
14%
Rates of Strain
14%
Al Alloy
13%
Energy Absorption
13%
Failure Mechanism
13%
Tensiles
13%
Microstructure Evolution
12%
Solid Solution
12%
Determines
12%
Finite Element Simulation
12%
Simulation Result
11%
Bending Strength
11%
Strain
11%
Cermet
11%
Finite Element Modeling
10%
Face-Centered Cubic
10%
Energy Dissipation
10%
Impact Loads
10%
Impact Damage
10%
Constitutive Model
10%
Compression Pre
10%
Selective Laser Melting
10%
Ultimate Tensile Strength
9%
Body-Centered Cubic
9%
High Molecular Weight Polyethylene
9%
Rod
9%
Strain Hardening
9%
Fracture Surface
8%
Flow Stress
8%
Basal Slip
8%
Plastic Deformation
8%