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The effects of strain rate and welding current mode on the dynamic impact behavior of plasma-arc-welded 304L stainless steel weldments
Woei Shyan Lee
, Chi Feng Lin
, Chen Yang Liu
, Chin Wei Cheng
Department of Mechanical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
9
Citations (Scopus)
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Dive into the research topics of 'The effects of strain rate and welding current mode on the dynamic impact behavior of plasma-arc-welded 304L stainless steel weldments'. Together they form a unique fingerprint.
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Engineering
Strain Rate
100%
Impact Behavior
100%
Effect of Strain
100%
Stainless Steel 304L
100%
Arc Plasma
100%
Weldment
100%
Fracture Behavior
30%
Martensite
30%
Dislocation Density
20%
Base Metal
20%
Fusion Zone
20%
Split Hopkinson Pressure Bar
10%
Impact Response
10%
Impact Loads
10%
Increasing Strain
10%
Flow Stress
10%
Activation Volume
10%
Strain Rate Sensitivity
10%
Adiabatic Shear Band
10%
Stress-Strain Curve
10%
High Dislocation Density
10%
Microstructure Evolution
10%
Thermal Softening
10%
Keyphrases
Plasma Arc
100%
Welding Current
100%
Martensite Volume Fraction
37%
Density Fractions
25%
Rate Parameters
12%
Constant Strain
12%
Dynamic Impact Response
12%
Twin Formation
12%
Welding Parameters
12%
Continuous Current Mode
12%
Pulsed Current Welding
12%
Continuous Current
12%
Twin Density
12%
Material Science
Welding Current
100%