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INIS
powders
100%
lasers
97%
manufacturing
84%
additives
76%
alloys
54%
stainless steels
42%
austenitic steels
39%
performance
37%
steels
35%
residual stresses
33%
tools
31%
nitrogen
31%
nickel
29%
microstructure
26%
processing
25%
heat treatments
22%
solids
22%
tracks
22%
magnetic properties
21%
solidification
21%
modeling
21%
carbon
21%
comparative evaluations
20%
magnets
19%
coercive force
19%
electric motors
19%
metals
17%
crystals
17%
cracking
17%
plasticity
17%
design
16%
levels
16%
melting
15%
mitigation
14%
machining
14%
binders
13%
powder metallurgy
13%
losses
13%
eddy currents
13%
magnetic materials
13%
mechanical properties
12%
sintering
12%
corrosion
12%
control
12%
gases
12%
annealing
11%
permanent magnets
11%
pools
11%
beams
11%
demand
11%
Keyphrases
Additive Manufacturing
99%
Laser Powder Bed Fusion (L-PBF)
88%
Magnetic Properties
31%
Residual Stress
30%
Nitrogen-alloyed
29%
Austenitic
29%
Nickel-free Stainless Steel
24%
Single Track
22%
Nitrogen Content
22%
Carbon Tool Steel
19%
High Coercivity
19%
Crystal Plasticity
19%
Ni-free
19%
Stainless Steel
19%
Motor Component
19%
Electric Motor
19%
Electric Machines
19%
Heat Treatment
17%
Printability
16%
Complex Shape
15%
Microstructure
15%
Powder Bed Fusion
14%
Laser Beams
14%
Powder Metallurgy
14%
Electrification
14%
Eddy Current Loss
13%
Alloying Element Effect
13%
Soft Magnetic Materials
13%
Calculation of Phase Diagrams (CALPHAD)
11%
Soft Magnetic
11%
Nd-Fe-B Powder
11%
Conventional Manufacturing
11%
Mechanical Properties
10%
High Performance
10%
Material Properties
10%
Engineering
Additive Manufacturing
89%
Laser Powder Bed Fusion
61%
Stainless Steel
39%
Powder Bed Fusion
24%
Residual Stress
24%
Coercivity
19%
Electric Motor
19%
Permanent Magnet
19%
Laser Beams
19%
Alloying Element
17%
Powder Metallurgy
16%
Sintering
15%
Eddy Current Loss
14%
Heat Treatment
14%
Electric Machine
14%
Melt Pool
13%
Process Route
13%
Energy Transition
13%