In this study, direct laser deposition (DLD) of nickel-based superalloy powders (Inconel 625) on structural steel (42CrMo4) was analysed. Cladding layers were produced by varying the main processing conditions: laser power, scanning speed, feed rate, and preheating. The processing window was established based on conditions that assured deposited layers without significant structural defects and a dilution between 15 and 30%. Scanning electron microscopy, energy dispersive spectroscopy, and electron backscatter diffraction were performed for microstructural characterisation. The Vickers hardness test was used to analyse the mechanical response of the optimised cladding layers. The results highlight the influence of preheating on the microstr...
Laser cladding is a method that can be applied to repair the crack and break on the mold and die sur...
This paper presents an investigation on the microstructure and surface hardness of the parts fabrica...
The corrosion and wear are major limiting factors for steel in the harsh environments and can be con...
The superficial coatings in micro-alloyed steel pipes has been a pointed way to decrease the corros...
Laser cladding is a well-established process to apply coatings on metals. However, on substrates con...
The realisation of employing Additive Layer Manufacturing (ALM) technologies to produce components i...
The aim of this work is to evaluate the microstructural evolutions developed by mixing a corrosion-r...
Nickel-based superalloys are substantially used in the manufacturing of boilers for ultra-supercriti...
Laser direct metal deposition (LDMD) has developed from a prototyping to a single and multiple metal...
Coatings of the nickel-based Metco 16C on the chromium steel substrate of a composition designed for...
Microstructure analysis of additively manufactured (AM) materials is an important step in understand...
The application of maraging steels such as 18Ni300 alloy is noteworthy for mould industries, applyin...
In this paper laser metal deposition (LMD) with blown powder was reviewed with respect to the materi...
This research was aimed at the development of production methods and tools needed to achieve a high ...
Direct metal deposition or laser cladding is a process capable of producing fully dense and net shap...
Laser cladding is a method that can be applied to repair the crack and break on the mold and die sur...
This paper presents an investigation on the microstructure and surface hardness of the parts fabrica...
The corrosion and wear are major limiting factors for steel in the harsh environments and can be con...
The superficial coatings in micro-alloyed steel pipes has been a pointed way to decrease the corros...
Laser cladding is a well-established process to apply coatings on metals. However, on substrates con...
The realisation of employing Additive Layer Manufacturing (ALM) technologies to produce components i...
The aim of this work is to evaluate the microstructural evolutions developed by mixing a corrosion-r...
Nickel-based superalloys are substantially used in the manufacturing of boilers for ultra-supercriti...
Laser direct metal deposition (LDMD) has developed from a prototyping to a single and multiple metal...
Coatings of the nickel-based Metco 16C on the chromium steel substrate of a composition designed for...
Microstructure analysis of additively manufactured (AM) materials is an important step in understand...
The application of maraging steels such as 18Ni300 alloy is noteworthy for mould industries, applyin...
In this paper laser metal deposition (LMD) with blown powder was reviewed with respect to the materi...
This research was aimed at the development of production methods and tools needed to achieve a high ...
Direct metal deposition or laser cladding is a process capable of producing fully dense and net shap...
Laser cladding is a method that can be applied to repair the crack and break on the mold and die sur...
This paper presents an investigation on the microstructure and surface hardness of the parts fabrica...
The corrosion and wear are major limiting factors for steel in the harsh environments and can be con...