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選擇性雷射熔融製造Inconel718鎳基超合金之疲勞性質及壽命評估模式研究
Hwang, Jiun-Ren
(PI)
機械工程學系
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Keyphrases
Life Assessment
100%
Property Evaluation
100%
Fatigue Life
100%
Nickel-based Superalloy
100%
Fatigue Properties
100%
Superalloy Inconel 718
100%
Selective Laser Melting
100%
Inconel 718 (IN718)
50%
Model Evaluation
37%
Fatigue Life Evaluation
37%
Stressful Life Events
12%
Fatigue Crack Propagation
12%
Traditional Manufacturing
12%
Fatigue Analysis
12%
Fatigue Stress
12%
Variable Amplitude Fatigue
12%
Fatigue Failure
12%
S-N Fatigue
12%
Fatigue Design
12%
High-cycle Fatigue Property
12%
Failure Mechanism
12%
Fatigue Crack Initiation
12%
Residual Life Estimation
12%
Fatigue Test
12%
Mean Stress Correction
12%
Microstructure
12%
Processing Advantage
12%
Manufacturing Process
12%
Metal Manufacturing
12%
Metal Parts
12%
Fatigue Crack Growth Rate
12%
Complex Parts
12%
Alloy 718
12%
Correction Model
12%
First Year
12%
Initiation Crack
12%
Industrial Applications
12%
Causal Relationship
12%
Fracture Mechanics
12%
Additive Manufacturing
12%
Engineering
Selective Laser Melting
100%
Fatigue Property
100%
Fatigue Life
37%
Industrial Applications
12%
High Cycle Fatigue
12%
Fracture Mechanics
12%
Fatigue Stress
12%
Shaped Part
12%
Stress Correction Model
12%
Residual Life
12%
Manufacturing Process
12%
Experimental Result
12%
Fatigue Analysis
12%
Fatigue Failure
12%
Additive Manufacturing
12%
Fatigue Design
12%
Mechanical Fatigue Test
12%
Crack Initiation Fatigue
12%
Fatigue Crack Propagation
12%
Crack Growth Rate
12%
Failure Mechanism
12%
Fatigue Crack Growth
12%
Alloy
12%
Material Science
Selective Laser Melting
100%
Nickel-Based Superalloys
100%
Inconel 718
100%
Fatigue of Materials
37%
Fatigue Crack
25%
Crack Propagation
12%
Crack Initiation
12%
Fatigue Crack Growth
12%
Fracture Mechanics
12%
Three Dimensional Printing
12%
High-Cycle Fatigue
12%
Failure Mechanism
12%
Alloy
12%