MasterThis thesis presents experimental investigations of 3D printing Ti6Al4V and pure tungsten structures by Directed Energy Deposition (DED). Experiments were conducted using an in-house DED printing system. First, the effect of build direction, wall thickness and heat treatment on the tensile strength and elongation were investigated. The strength of as-built samples were high enough to meet the ASTM requirements. However, only the samples built in the transverse direction met the requirement of elongation. Heat treatment made the mechanical properties isotropic and enhanced the elongation up to ~10 %. As the thermal condition was different depending on the wall thickness, it affected mechanical properties, especially samples with shor...
Over the past years, wire-based direct energy deposition (DED) has been transitioning from rapid p...
The additive manufacturing (AM) technique Directed Energy Deposition (DED) specializes in mending, q...
Additive manufacturing (AM) processes are reliable techniques to build highly complex metallic parts...
Although three-dimensional (3D) printing of tungsten parts by Powder Bed Fusion (PBF) has been demon...
Directed Energy Deposition (DED) is an Additive Manufacturing (AM) process that is gaining traction ...
The directed energy deposition (DED) process can be employed to build net shape components or protot...
Additive manufacturing (AM) has attracted much research interest in recent years due to its ability ...
One of the main applications of Directed Energy Deposition (DED) is the production of thin-wall stru...
Directed energy deposition (DED) is an additive manufacturing technique that enables rapid productio...
Directed energy deposition (DED) is an additive manufacturing technique which is commonly used to pr...
Direct Energy Deposition (DED) is a popular additive manufacturing (AM) method that excels in repair...
Direct Energy Deposition (DED) is an additive manufacturing technique suitable for producing big siz...
Direct energy deposition (DED) is a three-dimensional (3D) deposition technique that uses metallic p...
Copper and nickel alloys have excellent properties that are widely used in various industries like...
Current class Directed Energy Deposition (DED) techniques used for component manufacture and repair ...
Over the past years, wire-based direct energy deposition (DED) has been transitioning from rapid p...
The additive manufacturing (AM) technique Directed Energy Deposition (DED) specializes in mending, q...
Additive manufacturing (AM) processes are reliable techniques to build highly complex metallic parts...
Although three-dimensional (3D) printing of tungsten parts by Powder Bed Fusion (PBF) has been demon...
Directed Energy Deposition (DED) is an Additive Manufacturing (AM) process that is gaining traction ...
The directed energy deposition (DED) process can be employed to build net shape components or protot...
Additive manufacturing (AM) has attracted much research interest in recent years due to its ability ...
One of the main applications of Directed Energy Deposition (DED) is the production of thin-wall stru...
Directed energy deposition (DED) is an additive manufacturing technique that enables rapid productio...
Directed energy deposition (DED) is an additive manufacturing technique which is commonly used to pr...
Direct Energy Deposition (DED) is a popular additive manufacturing (AM) method that excels in repair...
Direct Energy Deposition (DED) is an additive manufacturing technique suitable for producing big siz...
Direct energy deposition (DED) is a three-dimensional (3D) deposition technique that uses metallic p...
Copper and nickel alloys have excellent properties that are widely used in various industries like...
Current class Directed Energy Deposition (DED) techniques used for component manufacture and repair ...
Over the past years, wire-based direct energy deposition (DED) has been transitioning from rapid p...
The additive manufacturing (AM) technique Directed Energy Deposition (DED) specializes in mending, q...
Additive manufacturing (AM) processes are reliable techniques to build highly complex metallic parts...