The sintering behavior of the powder injection molded Fe micro-nanopowder fabricated under low temperature and low pressure conditions of 70 degrees C and 4 MPa was investigated in terms of the microstructural development. It was found that the sintered density of the micro-nanopowder was remarkably increased in the temperature range of 800 to 900 degrees C by the nanopowder effect due to the enhancement of the material transport by grain boundary diffusion. The micrograins in the micro-nanopowder almost maintained their initial grain size until the sintered density reached 90% of the theoretical density (TD), even showing no drastic grain growth under the condition of full density of 97% TD after sintering at 1250 degrees C for 3 h. This m...
Development of nanoparticulate materials technology is essential to processing of highly functional ...
One of the significant advantages of nanopowder is activated sintering and better surface finish of ...
The key concept of nanopowder agglomerate sintering (NAS) is to enhance material transport by contro...
The present investigation was performed on the die compaction and sintering behavior of Fe micro-nan...
The densification and grain growth behavior of powder injection molded 316L stainless steel micro-na...
The low temperature powder injection molding (PIM) of the Fe micro-nano powder feedstock using a low...
The most important issue in the processing of nanoscale metal powders is whether the metal nanopowde...
The nano/micro-bimodal powder injection molding (PIM) process takes advantage of nano-PIM. Most stud...
There is a constant drive for improvement of the density of powder metallurgy (PM) steels as they ar...
Understanding the nanopowder agglomerate sintering (NAS) process is essential in the fabrication of ...
This paper reviews our recent investigations for finding a breakthrough for processing of net-shaped...
Nanopowders provide better details for micro features and surface finish in powder injection molding...
Sintering behavior of iron nanopowder agglomerate compact prepared by slurry compaction method was i...
Powder injection molding (PIM) of parts having structures in the sub-millimeter range, also known as...
For several decades, the sintering of nanoscale metal powders has been of great interest because the...
Development of nanoparticulate materials technology is essential to processing of highly functional ...
One of the significant advantages of nanopowder is activated sintering and better surface finish of ...
The key concept of nanopowder agglomerate sintering (NAS) is to enhance material transport by contro...
The present investigation was performed on the die compaction and sintering behavior of Fe micro-nan...
The densification and grain growth behavior of powder injection molded 316L stainless steel micro-na...
The low temperature powder injection molding (PIM) of the Fe micro-nano powder feedstock using a low...
The most important issue in the processing of nanoscale metal powders is whether the metal nanopowde...
The nano/micro-bimodal powder injection molding (PIM) process takes advantage of nano-PIM. Most stud...
There is a constant drive for improvement of the density of powder metallurgy (PM) steels as they ar...
Understanding the nanopowder agglomerate sintering (NAS) process is essential in the fabrication of ...
This paper reviews our recent investigations for finding a breakthrough for processing of net-shaped...
Nanopowders provide better details for micro features and surface finish in powder injection molding...
Sintering behavior of iron nanopowder agglomerate compact prepared by slurry compaction method was i...
Powder injection molding (PIM) of parts having structures in the sub-millimeter range, also known as...
For several decades, the sintering of nanoscale metal powders has been of great interest because the...
Development of nanoparticulate materials technology is essential to processing of highly functional ...
One of the significant advantages of nanopowder is activated sintering and better surface finish of ...
The key concept of nanopowder agglomerate sintering (NAS) is to enhance material transport by contro...