Engineering
Al Alloy
17%
Anisotropic
25%
Automotives
7%
Bending (Forming)
56%
Bending Dies
26%
Bending Radius
28%
Complex Shape
7%
Computational Homogenisation
17%
Constitutive Model
21%
Cross Section
19%
Deep Drawing
10%
Deformation Behavior
47%
Deformation Characteristic
11%
Dynamic Behavior
7%
Elastomer
15%
Elevated Temperature
7%
Equivalent Stress
9%
Experimental Investigation
38%
Experimental Result
13%
Fem Model
44%
Finite Element Analysis
24%
Finite Element Simulation
15%
Flow Behavior
11%
Forming Limit
7%
Forming Quality
13%
Forming Technology
59%
Fracture Strength
7%
Free Bending
100%
Heat Treatment
7%
High Strain Rate
23%
Hopkinson
7%
Joints (Structural Components)
11%
Loading Path
7%
Material Parameter
7%
Metal Forming
12%
Microtube
8%
Plastic Deformation
11%
Process Parameter
11%
Rate Deformation
11%
Rolling Direction
7%
Room Temperature
15%
Rotation Rate
9%
Simulation Result
13%
Spot Welding
8%
Strain Rate
20%
Tensile Property
9%
Tensile Test
10%
Texture Evolution
9%
Thickness Distribution
7%
Weld
11%
Material Science
304 Stainless Steel
6%
Aluminum
7%
Aluminum Alloy
19%
Aluminum-Lithium Alloys
30%
Anisotropy
12%
Crystal Microstructure
5%
Crystal Plasticity
22%
Deformation Mechanism
9%
Density
7%
Drawing Process
7%
Ductile Fracture
5%
Elastomer
11%
Electron Backscatter Diffraction
5%
Finite Element Method
43%
Finite Element Modeling
46%
Fracture Behavior
8%
Fracture Toughness
5%
Friction Stir Welding
17%
Grain Size
12%
Heat Treatment
11%
Homogenization
11%
Hydroforming
49%
Materials Property
7%
Microstructural Evolution
6%
Plastic Anisotropy
6%
Plastic Deformation
5%
Sheet Metal Forming
17%
Spot Welding
6%
Strain Rate
48%
Surface (Surface Science)
21%
Tensile Property
13%
Titanium
5%
Ultimate Tensile Strength
17%
Welded Joint
9%
Yield Stress
15%