This paper presents the outcomes of an experimental investigation on the effect of sintering schedule, i.e., holding time and temperature to the final properties of FeCrAl powder compacts prepared through uniaxial die compaction process at above room temperature. The feedstock was prepared by mechanically mixing iron powder ASC 100.29 with chromium (22 wt%) and aluminium (11 wt%) for 30 min at room temperature. A cylindrical shape die was filled with the powder mass and heated for one hour for uniform heating of the die assembly together with the powder mass. Once the temperature reached to the setup temperature, i.e., 150ºC, the powder mass was formed by applying an axial pressure of 425 MPa simultaneously from upward and downward ...
The effect of the compaction rate on the structure, microstructure and properties of Fe-Al sinters o...
Iron powders of varying particle sizes and oxygen contents were manufactured from three different so...
An instrumented die was used to investigate the behaviour of metal powders during cold (ambient temp...
This paper presents the outcomes of an experimental investigation on the effect of sintering schedu...
This paper presents the outcomes of an experimental investigation on the effect of sintering schedu...
This paper presents the characteristics of FeCuAl powder compacts formed through uniaxial die compac...
This paper presents the outcomes of an experimental investigation on the effects of forming temperat...
This paper presents the development of FeCuAl powder compacts through warm compaction process. A lab...
This paper presents the outcomes of an experimental investigation on the effects of forming tempera...
Powder forming at above ambient temperature with admixed lubricant to obtain the high quality green...
AbstractThis paper presents the outcomes of an experimental investigation on the effect of lubricant...
Powder metallurgy compacts of near theoretical density have been made from commercial sponge iron an...
We fabricated mechanical parts of the automotive machines by using Cr-doped the Fe metal powder. We ...
In this study, iron and aluminum powders have been pressed up to 600 MPa pressure in a cold isostati...
This paper reports the outcomes of a comparative study between warm forming of metal powder with and...
The effect of the compaction rate on the structure, microstructure and properties of Fe-Al sinters o...
Iron powders of varying particle sizes and oxygen contents were manufactured from three different so...
An instrumented die was used to investigate the behaviour of metal powders during cold (ambient temp...
This paper presents the outcomes of an experimental investigation on the effect of sintering schedu...
This paper presents the outcomes of an experimental investigation on the effect of sintering schedu...
This paper presents the characteristics of FeCuAl powder compacts formed through uniaxial die compac...
This paper presents the outcomes of an experimental investigation on the effects of forming temperat...
This paper presents the development of FeCuAl powder compacts through warm compaction process. A lab...
This paper presents the outcomes of an experimental investigation on the effects of forming tempera...
Powder forming at above ambient temperature with admixed lubricant to obtain the high quality green...
AbstractThis paper presents the outcomes of an experimental investigation on the effect of lubricant...
Powder metallurgy compacts of near theoretical density have been made from commercial sponge iron an...
We fabricated mechanical parts of the automotive machines by using Cr-doped the Fe metal powder. We ...
In this study, iron and aluminum powders have been pressed up to 600 MPa pressure in a cold isostati...
This paper reports the outcomes of a comparative study between warm forming of metal powder with and...
The effect of the compaction rate on the structure, microstructure and properties of Fe-Al sinters o...
Iron powders of varying particle sizes and oxygen contents were manufactured from three different so...
An instrumented die was used to investigate the behaviour of metal powders during cold (ambient temp...