Reaching high density in PM steels is important for high-performance applications. In this study, liquid phase sintering of PM steels by adding gas-atomized Ni-Mn-B master alloy was investigated for enhancing the density levels of Fe- and Mo- prealloyed steel powder compacts. The results indicated that liquid formation occurs in two stages, beginning with the master alloy melting (LP-1) below and eutectic phase formation (LP-2) above 1373 K (1100 °C). Mo and C addition revealed a significant influence on the LP-2 temperatures and hence on the final densification behavior and mechanical properties. Microstructural embrittlement occurs with the formation of continuous boride networks along the grain boundaries, and its severity increases wit...
The Master-alloy (MA) alloy route to promote a liquid phase during sintering has great potential to ...
The properties of powder metallurgical, PM, components are dependent on that the dilemma of full den...
YesObtaining closed porosity, i.e. densities >7.4 g.cm-3, is a major target in PM development. To in...
Reaching high density in PM steels is important for high-performance applications. In this study, li...
Reaching high density in PM steels is important for high-performance applications. In this study, li...
High-density powder metallurgy (PM) components are required for high-performance applications. Liqui...
Boron is a feasible alloying element for liquid phase sintering (LPS) of powder metallurgy (PM) stee...
Powder metallurgy (PM) is one of the most cost effective methods for manufacturing structural compon...
Liquid Phase Sintering based on boron additions as a sintering enhancer, has been used for successfu...
Low alloyed steels containing innovative combinations of alloying elements have been produced though...
High-performance applications of powder metallurgy (PM) steel components are limited by the presence...
Several master alloys with defined chemical composition, able to generate liquid phases at relativel...
Powder metallurgy (PM) offers several variants to introduce alloying elements for establishing the d...
In this study, supersolidus liquid phase sintering (SLPS) of an industrially relevant Fe-C-Mo alloy...
The work presented has the ultimate aim to increase dynamic mechanical properties by improvements in...
The Master-alloy (MA) alloy route to promote a liquid phase during sintering has great potential to ...
The properties of powder metallurgical, PM, components are dependent on that the dilemma of full den...
YesObtaining closed porosity, i.e. densities >7.4 g.cm-3, is a major target in PM development. To in...
Reaching high density in PM steels is important for high-performance applications. In this study, li...
Reaching high density in PM steels is important for high-performance applications. In this study, li...
High-density powder metallurgy (PM) components are required for high-performance applications. Liqui...
Boron is a feasible alloying element for liquid phase sintering (LPS) of powder metallurgy (PM) stee...
Powder metallurgy (PM) is one of the most cost effective methods for manufacturing structural compon...
Liquid Phase Sintering based on boron additions as a sintering enhancer, has been used for successfu...
Low alloyed steels containing innovative combinations of alloying elements have been produced though...
High-performance applications of powder metallurgy (PM) steel components are limited by the presence...
Several master alloys with defined chemical composition, able to generate liquid phases at relativel...
Powder metallurgy (PM) offers several variants to introduce alloying elements for establishing the d...
In this study, supersolidus liquid phase sintering (SLPS) of an industrially relevant Fe-C-Mo alloy...
The work presented has the ultimate aim to increase dynamic mechanical properties by improvements in...
The Master-alloy (MA) alloy route to promote a liquid phase during sintering has great potential to ...
The properties of powder metallurgical, PM, components are dependent on that the dilemma of full den...
YesObtaining closed porosity, i.e. densities >7.4 g.cm-3, is a major target in PM development. To in...