In this research, a micro direct metal deposition process, newly developed as a potential method for micro additive manufacturing was used to fabricate NiTi builds. The effect of scanning strategy on grain growth and textural evolution was investigated using scanning electron microscope equipped with electron backscattered diffraction detector. Investigations showed that, the angle between the successive single tracks has an important role in grain size distribution and textural evolution of NiTi phase. Unidirectional laser beam scanning pattern developed a fiber texture; conversely, a backward and forward scanning pattern developed a strong ⟨100⟩ ‖‖ RD texture on the surface of NiTi cubic samples produced by micro direct metal deposition
Selective laser melting (SLM) has been shown to be an attractive manufacturing route for the product...
Shape memory alloys (SMA) are widely used in the biomedical field due to their unique properties. Am...
This investigation deals with the evolution of grain boundary microstructure and crystallographic te...
Micro manufacturing using micro direct metal deposition was successfully implemented on NiTi powder ...
Long-term fixation of biomedical implants is achievable by using porous materials. These kinds of ma...
This study focuses on the influence of additive manufacturing process strategies on the specimen geo...
Thin film shape memory alloys are a promising material for use in micro-scale devices for actuation ...
An experimental investigation of the micro and macromechanical transformation behavior of binary NiT...
For NiTi alloys, different additive manufacturing processes may have different compressive recovery ...
Nickel-Titanium alloys have been of high research interest in recent years due to their shape memory...
Texture evolution of NiTi shape memory alloy was investigated during uniaxial compression deformatio...
Both nanocrystalline and amorphous phases are observed from the near surface of nickel titanium shap...
In the present contribution some recent results of advanced transmission electron microscopy applica...
Selective laser melting allows the fabrication of NiTi implants with pre-defined, complex shapes. Th...
Selective laser melting (SLM) has been shown to be an attractive manufacturing route for the product...
Selective laser melting (SLM) has been shown to be an attractive manufacturing route for the product...
Shape memory alloys (SMA) are widely used in the biomedical field due to their unique properties. Am...
This investigation deals with the evolution of grain boundary microstructure and crystallographic te...
Micro manufacturing using micro direct metal deposition was successfully implemented on NiTi powder ...
Long-term fixation of biomedical implants is achievable by using porous materials. These kinds of ma...
This study focuses on the influence of additive manufacturing process strategies on the specimen geo...
Thin film shape memory alloys are a promising material for use in micro-scale devices for actuation ...
An experimental investigation of the micro and macromechanical transformation behavior of binary NiT...
For NiTi alloys, different additive manufacturing processes may have different compressive recovery ...
Nickel-Titanium alloys have been of high research interest in recent years due to their shape memory...
Texture evolution of NiTi shape memory alloy was investigated during uniaxial compression deformatio...
Both nanocrystalline and amorphous phases are observed from the near surface of nickel titanium shap...
In the present contribution some recent results of advanced transmission electron microscopy applica...
Selective laser melting allows the fabrication of NiTi implants with pre-defined, complex shapes. Th...
Selective laser melting (SLM) has been shown to be an attractive manufacturing route for the product...
Selective laser melting (SLM) has been shown to be an attractive manufacturing route for the product...
Shape memory alloys (SMA) are widely used in the biomedical field due to their unique properties. Am...
This investigation deals with the evolution of grain boundary microstructure and crystallographic te...