Engineering
Axisymmetric
50%
Central Region
50%
Complex Stress State
50%
Cracking Mechanism
100%
Cyclic Loading
50%
Experimental Observation
50%
Fem Model
50%
Fracture Behavior
50%
Fracture Criterion
100%
Industrial Applications
50%
Limitations
50%
Mannesmann Effect
50%
Material Constant
100%
Material Flow
50%
Maximum Shear Stress
100%
Metal Forming
50%
Model Material
50%
Physical Model
50%
Plasticine
50%
Product Quality
50%
Rolling Process
50%
Stress State
50%
Tensile Stress σ
100%
Keyphrases
Axial Tensile Stress
14%
Central Crack
100%
Central Region
14%
Complex Stress State
14%
Crack Criterion
100%
Cracking Mechanism
100%
Cracking Moment
14%
Cross-wedge Rolling
100%
Cyclic Loading
14%
Die Geometry
42%
Die Shape
14%
Finite Element Modeling
14%
Flour
14%
Fracture Behavior
14%
Fracture Criterion
28%
Industrial Application
14%
Internal Fracture
14%
Mannesmann Effect
14%
Material Constants
28%
Material Flow
14%
Maximum Shear Stress
28%
Metal Forming Process
14%
Physical Model
14%
Plasticine
14%
Product Quality
14%
Reduced Product
14%
Rolling Experiment
14%
Rolling Process
14%
Shear Stress
14%
Significant Benefit
14%
Specific Stresses
14%
Stepped Shaft
14%
Stress Loading
14%
Stress State
14%
Tensile Stress
14%
Time Efficiency
14%
Transport Industry
14%
Material Science
Composite Material
50%
Finite Element Modeling
50%
Fracture Behavior
50%
Metal Forming Process
50%
Shaft
50%
Ultimate Tensile Strength
100%