This paper describes the microstructural and mechanical properties of injection moulded 17-4 PH stainless steel gas and water atomised powder. Gas and water atomised stainless steel powders were injection moulded with wax based binder. The critical powder loading for injection moulding were 62.5 and 55 vol.-% for gas and water atomised powders respectively. Binder debinding was performed using solvent and thermal method. After dedinding the samples were sintered at different temperatures for 1 h in pure H-2. Metallographic studies were conducted to determine to extend densification and the corresponding microstructural changes. The results show that gas atomised powder could be sintered to a maximum (98.7%) of theoretical density, and water...
The effects of hot isostatic pressing (HIP) on the densification, mechanical properties, and microst...
The thesis presents the results of the investigation carried out to determine the effect of injecti...
In this paper, the performance of feedstock characteristics for micro metal injection molding (μMIM)...
This paper describes the electrochemical behavior of injection molded 17-4PH stainless steel gas and...
The present study investigates the microstructural evolution and densification behavior of water and...
Influence of powder shape resulting from the fabrication route (gas or water atomization) together w...
316L stainless steel samples are fabricated by metal injection molding using water-atomized and gas-...
Chemical composition and atomizing gas of powders may affect properties of 17-4 PH fabricated via s...
The metal injection molding (MIM) of water-atomized 316L stainless steel powder was carried out in t...
I n this study, influence of hydrolic pressure or gas pressure on the powder injection molding of 31...
The use of gas-atomized powder as the feedstock material for the Laser Powder Bed Fusion (LPBF) pro...
In this research article, the effect of Nb addition and sintering conditions on the microstructural,...
Sintering is a key step in the metal injection molding process, which affects the final density as w...
A series of 420 stainless steel samples produced using the M-flex system (a powder-based 3D printer)...
Nowadays, micro metal injection molding (µMIM) has become among the promising method in powder metal...
The effects of hot isostatic pressing (HIP) on the densification, mechanical properties, and microst...
The thesis presents the results of the investigation carried out to determine the effect of injecti...
In this paper, the performance of feedstock characteristics for micro metal injection molding (μMIM)...
This paper describes the electrochemical behavior of injection molded 17-4PH stainless steel gas and...
The present study investigates the microstructural evolution and densification behavior of water and...
Influence of powder shape resulting from the fabrication route (gas or water atomization) together w...
316L stainless steel samples are fabricated by metal injection molding using water-atomized and gas-...
Chemical composition and atomizing gas of powders may affect properties of 17-4 PH fabricated via s...
The metal injection molding (MIM) of water-atomized 316L stainless steel powder was carried out in t...
I n this study, influence of hydrolic pressure or gas pressure on the powder injection molding of 31...
The use of gas-atomized powder as the feedstock material for the Laser Powder Bed Fusion (LPBF) pro...
In this research article, the effect of Nb addition and sintering conditions on the microstructural,...
Sintering is a key step in the metal injection molding process, which affects the final density as w...
A series of 420 stainless steel samples produced using the M-flex system (a powder-based 3D printer)...
Nowadays, micro metal injection molding (µMIM) has become among the promising method in powder metal...
The effects of hot isostatic pressing (HIP) on the densification, mechanical properties, and microst...
The thesis presents the results of the investigation carried out to determine the effect of injecti...
In this paper, the performance of feedstock characteristics for micro metal injection molding (μMIM)...