Keyphrases
Laser Surfacing
100%
Glazing
100%
H13 Tool Steel
93%
Laser Cladding Process
75%
Residual Stress
73%
Laser Power
54%
Functionally Graded Additive Manufacturing
50%
Thermo-mechanical Modeling
50%
Cooling Rate
42%
Temperature Distribution
39%
Steel Substrate
37%
Tensile Residual Stress
36%
Additive Manufacturing
30%
Finite Element Thermal Model
25%
Teaching Case Study
25%
Laser Microprocessing
25%
Powder Bed Fusion
25%
Geometrical Tolerancing
25%
Geometric Dimensioning
25%
Clad Material
25%
H13 Steel
25%
Material Compatibility
25%
Residual Materials
25%
Ti-6Al-4V Alloy
25%
Similar Material
25%
Processing Techniques
25%
Laser Cladding
25%
Three-dimensional (3D)
25%
Dissimilar Materials
25%
Two-dimensional Finite Element
25%
Analytical Model
25%
Thermal Model
25%
Numerical Investigation
25%
Cladding Material
23%
Beamwidth
19%
Thermal Strain
18%
Maximum Surface Temperature
18%
Additive Manufacturing Process
18%
Substrate Material
17%
Laser Beams
16%
Finite Element Method
16%
Surface Temperature
16%
ANSYS 15
14%
Cylindrical Geometry
14%
Heating Rate
14%
Two Dimensional
13%
Thermal Methods
12%
Strain Modulus
12%
Dissimilar Substrates
12%
Formation Factor
12%
Engineering
Laser Surface
100%
H13 Tool Steel
93%
Residual Stress
85%
Laser Cladding Process
75%
Additive Manufacturing
75%
Laser Power
54%
Thermal Model
50%
Temperature Distribution
39%
Finite Element Analysis
38%
Tensile Residual Stress
36%
Cooling Rate
34%
Two Dimensional
30%
Transients
26%
Laser Micro
25%
Geometric Dimensioning and Tolerancing
25%
Material Compatibility
25%
Powder Bed Fusion
25%
Laser Cladding
25%
Processing Technique
25%
Analytical Model
25%
Cladding Material
23%
Additive Manufacturing Process
20%
Thermal Strain
18%
Maximum Surface Temperature
18%
Substrate Material
17%
Laser Beams
16%
Heating Rate
14%
Beam Width
13%
Actuator
13%
Melting Point
13%
Preheating Temperature
12%
Young's Modulus
12%
Tensiles
12%
One Dimensional
12%
Mechanical Model
11%
Finite Element Modeling
11%
Circular Cross Section
8%
Modified Surface
8%
Maximum Cooling Rate
8%
Fusion Technique
8%
Wear Resistance
8%
Extensive Research
8%
Design Guideline
8%
Energy Distribution
8%
Power Level
8%
Thermal Energy
8%
Commercial Software
8%
Maximum Temperature
8%
Melting Temperature
8%
Process Parameter
8%