Sintering is an essential stage in powder metallurgy, which affects the final microstructure and performance of the part. This study is concerned with the sintering and mechanical behaviors of Fe-18Cr-8Mn-0.9N stainless steel prepared from mechanically alloyed amorphous/nanocrystalline powders. The
Compaction and sintering response of mechanically alloyed Cu–Cr powder
✍ Scribed by Indranil Lahiri; S. Bhargava
- Publisher
- Elsevier Science
- Year
- 2009
- Tongue
- English
- Weight
- 859 KB
- Volume
- 189
- Category
- Article
- ISSN
- 0032-5910
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✦ Synopsis
The present paper discusses the powder processing techniques of mechanically alloyed Cu-Cr powder. Mechanical alloying is required to obtain a nano-scale homogeneous mixture of Cu and Cr. Two processes to prepare Cu-Cr contacts are proposed from the present study for obtaining compacts having better properties. While the explosive compaction of the mechanically alloyed powder forcibly fills the pores to show excellent density and electrical conductivity, application of Cu coating to the mechanical alloyed powder gives a shortcircuit diffusion path during sintering and thus, shows the best combination of properties compared to the presently used Cu-Cr compacts. Both the processes show near theoretical density, exceptionally high electrical conductivity and comparable hardness. Moreover, both the processes change the sintering process of Cu-Cr compacts from liquid phase sintering to solid-state sintering, thus making the process more energy efficient.
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