Repairing damaged products made of nickel-based superalloys is an urgent task because replacing them with new products is a costly and time-consuming process. The present work considers the method of electron-beam additive manufacturing as an approach to the repair process. First of all, the initial product was produced by layer-by-layer deposition. Hereon, a part of the surface was removed, and then several more layers were deposited. Thus, three areas were considered in the work: initial, transitional, and repaired areas. Each of the formed regions was defect-free. It was found that the transition region was difficult to identify since it did not differ in structural-phase composition from the initial and repaired regions. It is shown tha...
This study examined the micro- and surface structures of objects manufactured by selective laser mel...
The nickel-based superalloys Inconel alloy 600, Udimet alloy 720, and Inconel alloy 718 were produce...
Additive manufacturing (AM), also known as 3D printing, has gained significant interest in aerospace...
Nickel-based superalloys have been manufactured by electron beam melting (EBM). EBM is an additive m...
Electron beam melting (EBM) is one of the most widely used additive manufacturing (AM) methods for m...
Additive manufacturing (AM) of Ni-based superalloys such as Alloy 718 may obviate the need for diffi...
Single crystal (SX) nickel-based superalloy blade forms a key element of hightemperature gas turbin...
Electron beam melting (EBM), a metal additive manufacturing (AM) process, has received considerable ...
Electron beam melting (EBM) is gaining rapid popularity for production of complex customized parts. ...
Ni-based superalloys are widely used in the components of aeronautic engines and gas turbines operat...
Alloy 718 finds application in gas turbine engine components, such as turbine disks, compressor blad...
Master's thesis in Mechanical engineeringThe effect of electron beam welding on the precipitation st...
Additive manufacturing (AM) is the name given to the technology of building 3D parts by adding layer...
The nickel-based superalloys processed by additive manufacturing are very promising structural mater...
This study examined the micro- and surface structures of objects manufactured by selective laser mel...
The nickel-based superalloys Inconel alloy 600, Udimet alloy 720, and Inconel alloy 718 were produce...
Additive manufacturing (AM), also known as 3D printing, has gained significant interest in aerospace...
Nickel-based superalloys have been manufactured by electron beam melting (EBM). EBM is an additive m...
Electron beam melting (EBM) is one of the most widely used additive manufacturing (AM) methods for m...
Additive manufacturing (AM) of Ni-based superalloys such as Alloy 718 may obviate the need for diffi...
Single crystal (SX) nickel-based superalloy blade forms a key element of hightemperature gas turbin...
Electron beam melting (EBM), a metal additive manufacturing (AM) process, has received considerable ...
Electron beam melting (EBM) is gaining rapid popularity for production of complex customized parts. ...
Ni-based superalloys are widely used in the components of aeronautic engines and gas turbines operat...
Alloy 718 finds application in gas turbine engine components, such as turbine disks, compressor blad...
Master's thesis in Mechanical engineeringThe effect of electron beam welding on the precipitation st...
Additive manufacturing (AM) is the name given to the technology of building 3D parts by adding layer...
The nickel-based superalloys processed by additive manufacturing are very promising structural mater...
This study examined the micro- and surface structures of objects manufactured by selective laser mel...
The nickel-based superalloys Inconel alloy 600, Udimet alloy 720, and Inconel alloy 718 were produce...
Additive manufacturing (AM), also known as 3D printing, has gained significant interest in aerospace...