Coarsening in solder alloys is a widely accepted indicator for possible failure of joints in electronic devices. Based on the well-established Cahn–Larché model with logarithmic chemical energy density (Dreyer and Müller, 2001) [20], we present a computational framework for the efficient and reliable simulation of coarsening in binary alloys. Main features are adaptive mesh refinement based on hierarchical error estimates, fast and reliable algebraic solution by multigrid and Schur–Newton multigrid methods, and the quantification of the coarsening speed by the temporal growth of mean phase radii. We provide a detailed description and a numerical assessment of the algorithm and its different components, together with a practical application ...
We present an efficient solver for the simulation of many-particle solid-state-sintering processes. ...
AbstractWe employ adaptive mesh refinement, implicit time stepping, a nonlinear multigrid solver and...
peer reviewedDuring a Selective Laser Melting (SLM) process, applied thermal cycles and solidificati...
AbstractSolders represent highly versatile and useful materials. They provide a broad range of techn...
The ban of lead in electronics solder by EU directives results in the technological challenge to dev...
This paper presents a quantitative simulation of the phase separation and coarsening phenomenon in e...
The aim of this work is to analyse the morphological changes in alloys with elastic misfit. The phas...
This paper presents a detailed numerical simulation of the coarsening phenomenon observed in microel...
The Cahn-Hilliard model is a typical phase field approach for describing phase separation and coarse...
A typical phase field approach for describing phase separation and coarsening phenomena in alloys is...
This paper presents a model, which is capable to simulate the coarsening process observed during the...
A critical issue in the long-term reliability of solder connections used in electronic packages is t...
peer reviewedIn the present work, the capacity of phase field method to highlight microstructural ch...
AbstractWe develop a method for adaptive mesh refinement for steady state problems that arise in the...
Using state-of-the-art numerical techniques, such as mesh adaptivity, implicit time-stepping and a n...
We present an efficient solver for the simulation of many-particle solid-state-sintering processes. ...
AbstractWe employ adaptive mesh refinement, implicit time stepping, a nonlinear multigrid solver and...
peer reviewedDuring a Selective Laser Melting (SLM) process, applied thermal cycles and solidificati...
AbstractSolders represent highly versatile and useful materials. They provide a broad range of techn...
The ban of lead in electronics solder by EU directives results in the technological challenge to dev...
This paper presents a quantitative simulation of the phase separation and coarsening phenomenon in e...
The aim of this work is to analyse the morphological changes in alloys with elastic misfit. The phas...
This paper presents a detailed numerical simulation of the coarsening phenomenon observed in microel...
The Cahn-Hilliard model is a typical phase field approach for describing phase separation and coarse...
A typical phase field approach for describing phase separation and coarsening phenomena in alloys is...
This paper presents a model, which is capable to simulate the coarsening process observed during the...
A critical issue in the long-term reliability of solder connections used in electronic packages is t...
peer reviewedIn the present work, the capacity of phase field method to highlight microstructural ch...
AbstractWe develop a method for adaptive mesh refinement for steady state problems that arise in the...
Using state-of-the-art numerical techniques, such as mesh adaptivity, implicit time-stepping and a n...
We present an efficient solver for the simulation of many-particle solid-state-sintering processes. ...
AbstractWe employ adaptive mesh refinement, implicit time stepping, a nonlinear multigrid solver and...
peer reviewedDuring a Selective Laser Melting (SLM) process, applied thermal cycles and solidificati...