AbstractIn a repair process chain, damaged areas or cracks can be removed by milling and subsequently be reconditioned with new material deposition. The use of laser metal deposition has been investigated for this purpose. The material has been deposited into different groove shapes, using both stainless steel and Ti-6Al-4V. The influence of welding parameters on the microstructure and the heat affected zone has been studied. The parameters have been modified in order to achieve low heat input and consequently low distortion as well as low metallurgical impact. Finally, an evaluation of the opportunities for an automatized repair process is made
Recent studies have indicated that laser direct metal deposition can be used for repairing deep or i...
Parts or products from high performance metal are very expensive, partly due to the processing comp...
For the manufacturing of low pressure turbine blades, titanium aluminides are used as structural mat...
In a repair process chain for petrochemicals industry, damaged areas or cracks can be removed by mil...
AbstractIn a repair process chain, damaged areas or cracks can be removed by milling and subsequentl...
The nuclear and offshore wind industries are of great interest to meet the current challenges of pro...
Laser aided part-repair is an emerging trend that has great potential for future industrial applicat...
Laser metal deposition is an additive manufacturing process, which is used to produce functional met...
Laser aided part-repair is an emerging trend that has great potential for future industrial applica...
Abstract: Laser additive technology (LAT) uses a laser beam which locally melts the target material ...
Laser cladding is a metal deposition technique used to fabricate or repair components made from hig...
Direct Laser Deposition Technology is an additive manufacturing process which directly manufactures ...
The urge for more sustainable and cost-efficient repair methods for damaged parts is growing every d...
Parts or products from high performance metal are very expensive, partly due to the processing compl...
Surface coating, repair, and rapid design changes of high-value components and tools are demanding c...
Recent studies have indicated that laser direct metal deposition can be used for repairing deep or i...
Parts or products from high performance metal are very expensive, partly due to the processing comp...
For the manufacturing of low pressure turbine blades, titanium aluminides are used as structural mat...
In a repair process chain for petrochemicals industry, damaged areas or cracks can be removed by mil...
AbstractIn a repair process chain, damaged areas or cracks can be removed by milling and subsequentl...
The nuclear and offshore wind industries are of great interest to meet the current challenges of pro...
Laser aided part-repair is an emerging trend that has great potential for future industrial applicat...
Laser metal deposition is an additive manufacturing process, which is used to produce functional met...
Laser aided part-repair is an emerging trend that has great potential for future industrial applica...
Abstract: Laser additive technology (LAT) uses a laser beam which locally melts the target material ...
Laser cladding is a metal deposition technique used to fabricate or repair components made from hig...
Direct Laser Deposition Technology is an additive manufacturing process which directly manufactures ...
The urge for more sustainable and cost-efficient repair methods for damaged parts is growing every d...
Parts or products from high performance metal are very expensive, partly due to the processing compl...
Surface coating, repair, and rapid design changes of high-value components and tools are demanding c...
Recent studies have indicated that laser direct metal deposition can be used for repairing deep or i...
Parts or products from high performance metal are very expensive, partly due to the processing comp...
For the manufacturing of low pressure turbine blades, titanium aluminides are used as structural mat...