Sintering at particle scale: an Eulerian computing framework to deal with strong topological and material discontinuities (Q346238): Difference between revisions

From MaRDI portal
Import241208061232 (talk | contribs)
Normalize DOI.
Import recommendations run Q6767936
Property / Recommended article
 
Property / Recommended article: A direct particle-based computational framework for electrically enhanced thermo-mechanical sintering of powdered materials / rank
 
Normal rank
Property / Recommended article: A direct particle-based computational framework for electrically enhanced thermo-mechanical sintering of powdered materials / qualifier
 
Similarity Score: 0.84657574
Amount0.84657574
Unit1
Property / Recommended article: A direct particle-based computational framework for electrically enhanced thermo-mechanical sintering of powdered materials / qualifier
 
Property / Recommended article
 
Property / Recommended article: Coarse-grained computation for particle coagulation and sintering processes by linking quadrature method of moments with Monte-Carlo / rank
 
Normal rank
Property / Recommended article: Coarse-grained computation for particle coagulation and sintering processes by linking quadrature method of moments with Monte-Carlo / qualifier
 
Similarity Score: 0.83641905
Amount0.83641905
Unit1
Property / Recommended article: Coarse-grained computation for particle coagulation and sintering processes by linking quadrature method of moments with Monte-Carlo / qualifier
 
Property / Recommended article
 
Property / Recommended article: Computational homogenization of liquid‐phase sintering based on a mixed variational format / rank
 
Normal rank
Property / Recommended article: Computational homogenization of liquid‐phase sintering based on a mixed variational format / qualifier
 
Similarity Score: 0.83485454
Amount0.83485454
Unit1
Property / Recommended article: Computational homogenization of liquid‐phase sintering based on a mixed variational format / qualifier
 
Property / Recommended article
 
Property / Recommended article: Integral formulation to simulate the viscous sintering of a two-dimensional lattice of periodic unit cells / rank
 
Normal rank
Property / Recommended article: Integral formulation to simulate the viscous sintering of a two-dimensional lattice of periodic unit cells / qualifier
 
Similarity Score: 0.82974815
Amount0.82974815
Unit1
Property / Recommended article: Integral formulation to simulate the viscous sintering of a two-dimensional lattice of periodic unit cells / qualifier
 
Property / Recommended article
 
Property / Recommended article: Truncated integration for simultaneous simulation of sintering using a separated representation / rank
 
Normal rank
Property / Recommended article: Truncated integration for simultaneous simulation of sintering using a separated representation / qualifier
 
Similarity Score: 0.8274982
Amount0.8274982
Unit1
Property / Recommended article: Truncated integration for simultaneous simulation of sintering using a separated representation / qualifier
 
Property / Recommended article
 
Property / Recommended article: Numerical simulation of solid state sintering / rank
 
Normal rank
Property / Recommended article: Numerical simulation of solid state sintering / qualifier
 
Similarity Score: 0.82747614
Amount0.82747614
Unit1
Property / Recommended article: Numerical simulation of solid state sintering / qualifier
 
Property / Recommended article
 
Property / Recommended article: Direct Simulation and Mass Flow Stochastic Algorithms to Solve a Sintering-Coagulation Equation / rank
 
Normal rank
Property / Recommended article: Direct Simulation and Mass Flow Stochastic Algorithms to Solve a Sintering-Coagulation Equation / qualifier
 
Similarity Score: 0.82395124
Amount0.82395124
Unit1
Property / Recommended article: Direct Simulation and Mass Flow Stochastic Algorithms to Solve a Sintering-Coagulation Equation / qualifier
 
Property / Recommended article
 
Property / Recommended article: Computational homogenization of liquid-phase sintering with seamless transition from macroscopic compressibility to incompressibility / rank
 
Normal rank
Property / Recommended article: Computational homogenization of liquid-phase sintering with seamless transition from macroscopic compressibility to incompressibility / qualifier
 
Similarity Score: 0.82315797
Amount0.82315797
Unit1
Property / Recommended article: Computational homogenization of liquid-phase sintering with seamless transition from macroscopic compressibility to incompressibility / qualifier
 
Property / Recommended article
 
Property / Recommended article: An efficient linear and unconditionally stable numerical scheme for the phase field sintering model / rank
 
Normal rank
Property / Recommended article: An efficient linear and unconditionally stable numerical scheme for the phase field sintering model / qualifier
 
Similarity Score: 0.8217225
Amount0.8217225
Unit1
Property / Recommended article: An efficient linear and unconditionally stable numerical scheme for the phase field sintering model / qualifier
 

Revision as of 09:58, 18 April 2025

scientific article
Language Label Description Also known as
English
Sintering at particle scale: an Eulerian computing framework to deal with strong topological and material discontinuities
scientific article

    Statements

    Sintering at particle scale: an Eulerian computing framework to deal with strong topological and material discontinuities (English)
    0 references
    0 references
    0 references
    0 references
    0 references
    5 December 2016
    0 references
    Eulerian frame
    0 references
    stabilized finite elements
    0 references
    level-set method
    0 references
    materials discontinuities
    0 references
    topological changes
    0 references
    sintering
    0 references
    0 references
    0 references
    0 references
    0 references
    0 references
    0 references
    0 references
    0 references
    0 references

    Identifiers

    0 references
    0 references
    0 references
    0 references
    0 references
    0 references
    0 references