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Modelling of nanoparticle sintering under electrical boundary conditions
A.T. Alastalo
, H. Seppä
,
J.H. Leppäniemi
, M.J. Aronniemi
, M.L. Allen
,
T. Mattila
Vaisala Oyj
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
11
Citations (Scopus)
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Keyphrases
Nanoparticle Sintering
100%
Electrical Boundary Conditions
100%
Solution Process
50%
Interparticle Interactions
50%
Physical Processes
50%
Sintering Process
50%
Electrical Sintering
50%
Printed Conductor
50%
Electrically Conducting
50%
Statistical Model
50%
Nanoparticle Structure
50%
Comparison with Experimental Results
50%
Joule Heating
50%
Thermal Expansion
50%
Heat Equation
50%
Process Kinetics
50%
Solution of Equations
50%
INIS
nanoparticles
100%
modeling
100%
boundary conditions
100%
sintering
100%
solutions
50%
particles
50%
comparative evaluations
25%
geometry
25%
kinetics
25%
equations
25%
diffusion
25%
heat
25%
thermal expansion
25%
joule heating
25%
statistical models
25%
Engineering
Nanoparticles
100%
Boundary Condition
100%
Sintering
100%
Experimental Result
33%
Good Agreement
33%
Driving Force
33%
Sintering Process
33%
Resistance Heating
33%
Statistical Model
33%
Material Science
Nanoparticle
100%
Sintering
100%
Conductor
25%
Interparticle Force
25%
Thermal Expansion
25%
Chemical Engineering
Nanoparticle
100%
Joule Heating
33%