This work aims at contributing to the development of a revolutionary technology based on shape memory alloy (SMA) coatings deposited on-site to large-scale metallic structural elements, which operate in extreme environmental conditions, such as steel bridges and buildings. The proposed technology will contribute to improve the integrity of metallic civil structures, to alter and control their mechanical properties by external stimuli, to contribute to the stiffness and rigidity of an elastic metallic structure, to safely withstand the expected loading conditions, and to provide corrosion protection. To prove the feasibility of the concept, investigations were carried out by depositing commercial NiTinol Ni50.8Ti (at.%) powder, onto stainles...
Coatings based on NiCrAlC intermetallic based alloy were applied on AISI 316L stainless steel substr...
In this work, modelling of Nitinol (Ni-45 wt.%Ti) coating deposition, by means of High Velocity Oxyg...
The aim of the present study is to develop a Fe-based metal matrix composite (MMC) coating using hig...
This work aims at contributing to the development of a revolutionary technology based on shape memor...
Nickel titanium shape memory alloy (NiTi SMA) coatings demonstrate shape memory effects, superelasti...
AbstractDifferent spraying technologies (plasma and High Velocity Oxi-Fuel) have been use to obtain ...
The article covers a complex method of forming surface-modified layers using materials with shape me...
This work focuses on the microstructural, thermal and mechanical properties of NiAl coatings fabrica...
This paper presents an innovative approach, which enables control of the mechanical properties of me...
This paper presents an innovative approach, which enables control of the mechanical properties of me...
Thermal spray coatings represent a potential cost-effective means of protecting structural component...
The overall aim of this research project was to expand the understanding of the deposition of titani...
To improve the biocompatibility of NiTi shape memory alloy (SMA), a titanium oxide layer was fabrica...
The microstructural, micromechanical (Vickers microindentation, scratch testing) and tribological (p...
A highly dense Ni59Zr20Ti16Si2Sn3 partial amorphous metallic coating, about 500mm thick, was fabrica...
Coatings based on NiCrAlC intermetallic based alloy were applied on AISI 316L stainless steel substr...
In this work, modelling of Nitinol (Ni-45 wt.%Ti) coating deposition, by means of High Velocity Oxyg...
The aim of the present study is to develop a Fe-based metal matrix composite (MMC) coating using hig...
This work aims at contributing to the development of a revolutionary technology based on shape memor...
Nickel titanium shape memory alloy (NiTi SMA) coatings demonstrate shape memory effects, superelasti...
AbstractDifferent spraying technologies (plasma and High Velocity Oxi-Fuel) have been use to obtain ...
The article covers a complex method of forming surface-modified layers using materials with shape me...
This work focuses on the microstructural, thermal and mechanical properties of NiAl coatings fabrica...
This paper presents an innovative approach, which enables control of the mechanical properties of me...
This paper presents an innovative approach, which enables control of the mechanical properties of me...
Thermal spray coatings represent a potential cost-effective means of protecting structural component...
The overall aim of this research project was to expand the understanding of the deposition of titani...
To improve the biocompatibility of NiTi shape memory alloy (SMA), a titanium oxide layer was fabrica...
The microstructural, micromechanical (Vickers microindentation, scratch testing) and tribological (p...
A highly dense Ni59Zr20Ti16Si2Sn3 partial amorphous metallic coating, about 500mm thick, was fabrica...
Coatings based on NiCrAlC intermetallic based alloy were applied on AISI 316L stainless steel substr...
In this work, modelling of Nitinol (Ni-45 wt.%Ti) coating deposition, by means of High Velocity Oxyg...
The aim of the present study is to develop a Fe-based metal matrix composite (MMC) coating using hig...