In high-pressure die casting applications, efficient cooling of the die/mold is critical to reduce cycle time. Tool steel such as H13 is widely adopted to make these components due to its excellent mechanical properties. However, the low thermal conductivity of tool steel largely impedes its cooling capability. Therefore, joining tool steel with copper to enhance the overall thermal conductivity is critical. In this study, pure copper was deposited on H13 substrates using a laser-aided additive manufacturing process. Depositing Cu on H13 directly and via interlayers of a nickel-based alloy Deloro 22 (D22) were employed. Both experimental characterization and computational analysis were conducted to study the properties of these structures. ...
High pressure die casting remains a fast, cost-effective technique for manufacturing complex automot...
Publisher Copyright: © 2022, The Author(s), under exclusive licence to Springer-Verlag London Ltd., ...
The demand for a wider range of properties and functionalities has led to more research and developm...
When selecting a material for dies and molds, strength is needed at high temperatures to hold the sh...
Combining dissimilar materials in a single component is an effective solution to integrate diverse m...
Joining of dissimilar materials is becoming increasingly prevalent to combine differing material pr...
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...
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...
In high pressure die casting (HPDC) cooling time greatly affects the total cycle time. As thermal co...
The ability to combine multiple materials (MM) into a single component to expand its range of functi...
This study focuses on determining the optimal process parameters for multi-material additive manufac...
Internal cladding is almost impossible for parts where their internal geometry is too small or compl...
High pressure die casting remains a fast, cost-effective technique for manufacturing complex automot...
Publisher Copyright: © 2022, The Author(s), under exclusive licence to Springer-Verlag London Ltd., ...
The demand for a wider range of properties and functionalities has led to more research and developm...
When selecting a material for dies and molds, strength is needed at high temperatures to hold the sh...
Combining dissimilar materials in a single component is an effective solution to integrate diverse m...
Joining of dissimilar materials is becoming increasingly prevalent to combine differing material pr...
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...
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...
In high pressure die casting (HPDC) cooling time greatly affects the total cycle time. As thermal co...
The ability to combine multiple materials (MM) into a single component to expand its range of functi...
This study focuses on determining the optimal process parameters for multi-material additive manufac...
Internal cladding is almost impossible for parts where their internal geometry is too small or compl...
High pressure die casting remains a fast, cost-effective technique for manufacturing complex automot...
Publisher Copyright: © 2022, The Author(s), under exclusive licence to Springer-Verlag London Ltd., ...
The demand for a wider range of properties and functionalities has led to more research and developm...