When selecting a material for dies and molds, strength is needed at high temperatures to hold the shape of the component along with a high thermal conductivity to decrease the solidification time of the components. This need has led to the investigation of Cu to H13 tool steel bi-metallic structures. Utilizing a directed energy deposition experimental setup, two fabrication approaches were used: direct deposition of Cu on H13 and utilizing an intermediate layer of Deloro 22 (D22, \u3e 95 wt.% Ni content). Three structures were fabricated: Cu-H13 direct joints (DJ), Cu-D22-H13 multi-metallic structures (MMS), and D22-H13 DJ. In order to characterize the structures, the following was performed: microstructure characterization, elemental distr...
Publisher Copyright: © 2022 Elsevier LtdA novel multi-material design concept to be applied in plast...
Additive Manufacturing (AM), often known as 3D printing, is a technique for creating three-dimension...
The First Wall panels for ITER are complex parts composed of stainless steel, copper and beryllium [...
In high-pressure die casting applications, efficient cooling of the die/mold is critical to reduce c...
H13 tool steel powder was clad on copper alloy substrate both directly and using 41C stainless steel...
H13 tool steel powder was clad on copper alloy substrate both directly and using 41C stainless steel...
Combining dissimilar materials in a single component is an effective solution to integrate diverse m...
The joining of dissimilar materials is becoming increasingly prevalent to integrate different materi...
The joining of dissimilar materials is becoming increasingly prevalent to integrate different materi...
The feasibility of fabricating a single component with a copper and stainless steel multi-material s...
Inconel 625 (In625) is preferred under the circumstances where high strength and corrosion resistanc...
Joining of dissimilar materials is becoming increasingly prevalent to combine differing material pr...
In high pressure die casting (HPDC) cooling time greatly affects the total cycle time. As thermal co...
Copper/steel bimetal, one of the most popular and typical multi-material components (MMC), processes...
In the current study, the feasibility of fabricating copper—nickel alloys by using laser metal depos...
Publisher Copyright: © 2022 Elsevier LtdA novel multi-material design concept to be applied in plast...
Additive Manufacturing (AM), often known as 3D printing, is a technique for creating three-dimension...
The First Wall panels for ITER are complex parts composed of stainless steel, copper and beryllium [...
In high-pressure die casting applications, efficient cooling of the die/mold is critical to reduce c...
H13 tool steel powder was clad on copper alloy substrate both directly and using 41C stainless steel...
H13 tool steel powder was clad on copper alloy substrate both directly and using 41C stainless steel...
Combining dissimilar materials in a single component is an effective solution to integrate diverse m...
The joining of dissimilar materials is becoming increasingly prevalent to integrate different materi...
The joining of dissimilar materials is becoming increasingly prevalent to integrate different materi...
The feasibility of fabricating a single component with a copper and stainless steel multi-material s...
Inconel 625 (In625) is preferred under the circumstances where high strength and corrosion resistanc...
Joining of dissimilar materials is becoming increasingly prevalent to combine differing material pr...
In high pressure die casting (HPDC) cooling time greatly affects the total cycle time. As thermal co...
Copper/steel bimetal, one of the most popular and typical multi-material components (MMC), processes...
In the current study, the feasibility of fabricating copper—nickel alloys by using laser metal depos...
Publisher Copyright: © 2022 Elsevier LtdA novel multi-material design concept to be applied in plast...
Additive Manufacturing (AM), often known as 3D printing, is a technique for creating three-dimension...
The First Wall panels for ITER are complex parts composed of stainless steel, copper and beryllium [...