AbstractDue to the costs of replacing certain damage parts in thermal power stations by new ones, it is frequent to carry out several tasks of repair and maintenance by means of conventional welding. With the objective of improving and optimizing these maintenance duties, a laser powder welding process of a Co-based alloy, Stellite®6, on a Cr-Mo low alloy steel, ASTM A182 F11, has been developed. Moreover, a comparative study of morphology and microstructure of the deposited layers has been carried out between the laser process and a conventional one
Within railway engineering practice continuous rails is created by welding lengths of rail. Conventi...
none4noThe present paper assesses the applicability of laser powder direct energy deposition for wel...
Laser cladding is a thermal process for depositing a metallic alloy on to a parent metal to repair c...
AbstractDue to the costs of replacing certain damage parts in thermal power stations by new ones, it...
AbstractRefurbishment of damaged components is nowadays a useful solution to save maintenance costs....
This research was aimed at the development of production methods and tools needed to achieve a high ...
For laser cladding, a multitude of powders, known from conventional thermal coating processes, and c...
Laser powder technology offers several advantages compared to conventional cladding and welding tech...
The present study concerns the generation of a wear resistant Stellite 6 CO2 laser clad layer on the...
This thesis describes the technical development of the laser welding process and presents the result...
In this work, a permanent connection of a high-nitrogen steel plate is achieved by using layer-by-la...
The major problems in laser welding of cold-rolled steel sheets are a high reflection of laser beams...
The paper presents the results of laboratory tests of test specimens produced by multi-layer laser p...
This paper presents a process-structure-property relationship study of laser welds as a continuous c...
Among all the additive manufacturing techniques, Laser Powder Bed Fusion (LBPF), also called Selecti...
Within railway engineering practice continuous rails is created by welding lengths of rail. Conventi...
none4noThe present paper assesses the applicability of laser powder direct energy deposition for wel...
Laser cladding is a thermal process for depositing a metallic alloy on to a parent metal to repair c...
AbstractDue to the costs of replacing certain damage parts in thermal power stations by new ones, it...
AbstractRefurbishment of damaged components is nowadays a useful solution to save maintenance costs....
This research was aimed at the development of production methods and tools needed to achieve a high ...
For laser cladding, a multitude of powders, known from conventional thermal coating processes, and c...
Laser powder technology offers several advantages compared to conventional cladding and welding tech...
The present study concerns the generation of a wear resistant Stellite 6 CO2 laser clad layer on the...
This thesis describes the technical development of the laser welding process and presents the result...
In this work, a permanent connection of a high-nitrogen steel plate is achieved by using layer-by-la...
The major problems in laser welding of cold-rolled steel sheets are a high reflection of laser beams...
The paper presents the results of laboratory tests of test specimens produced by multi-layer laser p...
This paper presents a process-structure-property relationship study of laser welds as a continuous c...
Among all the additive manufacturing techniques, Laser Powder Bed Fusion (LBPF), also called Selecti...
Within railway engineering practice continuous rails is created by welding lengths of rail. Conventi...
none4noThe present paper assesses the applicability of laser powder direct energy deposition for wel...
Laser cladding is a thermal process for depositing a metallic alloy on to a parent metal to repair c...