A finite-element model of the cold compaction of ceramic powders by uniaxial pressing is developed and validated by comparison with experimental data. The mechanical behavior of processing powders is assumed according to the modified Drucker–Prager cap model. The frictional effects and the mechanical behavior of tools involved in the process are taken into account. The proposed model allows evaluation of the density distribution into the processed part, as well as stress and strain fields. Variations of the density distribution due to the unloading and the ejection of the part are evaluate
The present paper is concerned with the finite element modeling of Powder Metallurgy (P/M) cold die ...
The present paper is concerned with the finite element modeling of Powder Metallurgy (P/M) cold die ...
It is well-known that dry pressing of ceramic powders leads to density gradients in a ceramic compac...
A finite-element model of the cold compaction of ceramic powders by uniaxial pressing is developed a...
A finite-element model of the cold compaction of ceramic powders by uniaxial pressing is developed a...
This paper deals with a computational analysis of the influence of the pressing method and part geom...
This paper deals with a computational analysis of the influence of the pressing method and part geom...
This paper deals with a computational analysis of the influence of the pressing method and part geom...
The accurate simulation of powder compaction involves many different areas in computational mechanic...
The simulation of industrial processes involving cold compaction of powders allows for the optimizat...
In the manufacture of ceramic components, near-net-shape parts are commonly formed by uniaxially pre...
Common ceramic component manufacturing typically involves the processing of the raw materials in pow...
In order to optimize the process parameters of ceramic powder compaction, a process simulation was f...
Consolidation behavior of SiC powder was investigated under cold compaction. Experimental data were ...
With the objective of developing a predictive model for ceramic powder compaction we have investigat...
The present paper is concerned with the finite element modeling of Powder Metallurgy (P/M) cold die ...
The present paper is concerned with the finite element modeling of Powder Metallurgy (P/M) cold die ...
It is well-known that dry pressing of ceramic powders leads to density gradients in a ceramic compac...
A finite-element model of the cold compaction of ceramic powders by uniaxial pressing is developed a...
A finite-element model of the cold compaction of ceramic powders by uniaxial pressing is developed a...
This paper deals with a computational analysis of the influence of the pressing method and part geom...
This paper deals with a computational analysis of the influence of the pressing method and part geom...
This paper deals with a computational analysis of the influence of the pressing method and part geom...
The accurate simulation of powder compaction involves many different areas in computational mechanic...
The simulation of industrial processes involving cold compaction of powders allows for the optimizat...
In the manufacture of ceramic components, near-net-shape parts are commonly formed by uniaxially pre...
Common ceramic component manufacturing typically involves the processing of the raw materials in pow...
In order to optimize the process parameters of ceramic powder compaction, a process simulation was f...
Consolidation behavior of SiC powder was investigated under cold compaction. Experimental data were ...
With the objective of developing a predictive model for ceramic powder compaction we have investigat...
The present paper is concerned with the finite element modeling of Powder Metallurgy (P/M) cold die ...
The present paper is concerned with the finite element modeling of Powder Metallurgy (P/M) cold die ...
It is well-known that dry pressing of ceramic powders leads to density gradients in a ceramic compac...