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西北工业大学 国内
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科研成果
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查看 Scopus 资料
詹 梅
Professor
材料学院
h-index
7564
引用
45
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
1998 …
2025
每年的科研成果
综述
指纹
网络
科研成果
(370)
相似简介
(10)
指纹
深入其中 Mei Zhan 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
Engineering
Anisotropic
13%
Bending (Forming)
21%
Bending Angle
11%
Bending Radius
14%
Circumferential
10%
Compressive Stress
9%
Constitutive Model
16%
Cross Section
18%
Deformation Behavior
23%
Deformation Mechanism
11%
Deformation Mode
9%
Ductile Fracture
15%
Dynamic Recrystallization
12%
Experimental Result
11%
Fem Model
20%
Finite Element Analysis
25%
Finite Element Modeling
33%
Finite Element Simulation
9%
Flow Stress
12%
Forging Process
11%
Forming Limit
9%
Forming Quality
27%
Forming Technology
13%
Fracture Criterion
11%
Heat Treatment
11%
Hot Working
33%
Incremental Forming
8%
Isothermal Local Loading Forming
9%
Joule Heating Effect
7%
Large Diameter Thin
11%
Local Loading
11%
Microhardness
8%
Microstructure Evolution
18%
Numerical Control
20%
Phase Titanium Alloy
11%
Plastic Deformation
20%
Plastics Forming
21%
Precision Forging
11%
Process Parameter
18%
Processing Parameter
12%
Rotary Draw Bending
9%
Simulation Result
10%
Small Bending Radius
13%
Spinning Process
38%
Strain Rate
13%
Stress State
12%
Tensiles
7%
Thickness Reduction
11%
Weld
21%
Yield Point
8%
Material Science
Aluminum Alloy
48%
Anisotropy
14%
Annealing
5%
Composite Material
7%
Crack Propagation
5%
Crystal Plasticity
16%
Damage Evolution
5%
Deformation Mechanism
12%
Density
9%
Ductile Fracture
13%
Elastic Moduli
5%
Electromagnetic Forming
6%
Electron Backscatter Diffraction
5%
Fatigue Crack
7%
Fatigue of Materials
5%
Finite Element Method
30%
Finite Element Modeling
80%
Flow Forming
16%
Forging
5%
Grain Boundary
10%
Grain Refinement
8%
Grain Size
8%
Heat Treatment
11%
Hot Working
26%
Laminated Composite
6%
Low-Cycle Fatigue
5%
Magnesium Alloy
6%
Materials Property
15%
Microhardness
13%
Microstructural Evolution
7%
Nickel-Based Superalloys
6%
Nucleation
19%
Plastic Deformation
27%
Stainless Steel
7%
Stamping
5%
Strain Rate
26%
Stress Concentration
6%
Superalloys
5%
Surface (Surface Science)
25%
Titanium
18%
Titanium Alloy
100%
Ultimate Tensile Strength
9%
Volume Fraction
10%
Work Hardening
11%
Yield Stress
10%
Young's Modulus
9%