The low temperature powder injection molding (PIM) of the Fe micro-nano powder feedstock using a low melting binder was investigated in terms of the effects of nano powder on the molding property and the microstructural development during sintering. The feedstock consisted of 66 vol.% powder and 34 vol.% paraffin-wax binder in which the powder composition was 75 vol.% Fe micro powder (4 pm in average size) and 25 vol.% nano powder (100 nm). Injection molding was conducted under the conditions of 70 degrees C and 4 MPa. For comparison study, the micro powder feedstock was prepared with the same conditions of solid powder loading and binder composition. It was found that the presence of nano powders in the feedstock effectively suppressed som...
International audienceIn the applications of powder injection moulding (PIM), the metallic powders a...
[[abstract]]This investigation applies metal injection molding (MIM) to fabricate precise microcutte...
In this project, a feasible study on the production of 316L stainless steel micro-structures by micr...
The present investigation was performed on the die compaction and sintering behavior of Fe micro-nan...
The sintering behavior of the powder injection molded Fe micro-nanopowder fabricated under low tempe...
The nano/micro-bimodal powder injection molding (PIM) process takes advantage of nano-PIM. Most stud...
Nanopowders provide better details for micro features and surface finish in powder injection molding...
The design of the trimodal powder feedstock and its feasibility for micro powder injection molding (...
Nano powder injection molding is an appropriate technique for the mass production of micro component...
This paper reviews our recent investigations for finding a breakthrough for processing of net-shaped...
One of the significant advantages of nanopowder is activated sintering and better surface finish of ...
Micro powder injection molding (PIM) is used in manufacturing process to create complex shaped parts...
The densification and grain growth behavior of powder injection molded 316L stainless steel micro-na...
The rheological behavior of Fe trimodal powder feedstock for mu-PIM was investigated using torque rh...
Understanding the nanopowder agglomerate sintering (NAS) process is essential in the fabrication of ...
International audienceIn the applications of powder injection moulding (PIM), the metallic powders a...
[[abstract]]This investigation applies metal injection molding (MIM) to fabricate precise microcutte...
In this project, a feasible study on the production of 316L stainless steel micro-structures by micr...
The present investigation was performed on the die compaction and sintering behavior of Fe micro-nan...
The sintering behavior of the powder injection molded Fe micro-nanopowder fabricated under low tempe...
The nano/micro-bimodal powder injection molding (PIM) process takes advantage of nano-PIM. Most stud...
Nanopowders provide better details for micro features and surface finish in powder injection molding...
The design of the trimodal powder feedstock and its feasibility for micro powder injection molding (...
Nano powder injection molding is an appropriate technique for the mass production of micro component...
This paper reviews our recent investigations for finding a breakthrough for processing of net-shaped...
One of the significant advantages of nanopowder is activated sintering and better surface finish of ...
Micro powder injection molding (PIM) is used in manufacturing process to create complex shaped parts...
The densification and grain growth behavior of powder injection molded 316L stainless steel micro-na...
The rheological behavior of Fe trimodal powder feedstock for mu-PIM was investigated using torque rh...
Understanding the nanopowder agglomerate sintering (NAS) process is essential in the fabrication of ...
International audienceIn the applications of powder injection moulding (PIM), the metallic powders a...
[[abstract]]This investigation applies metal injection molding (MIM) to fabricate precise microcutte...
In this project, a feasible study on the production of 316L stainless steel micro-structures by micr...