This study focuses on the influence of additive manufacturing process strategies on the specimen geometry, porosity, microstructure and mechanical properties as well as their impacts on the design of metamaterials. Filigree additively manufactured NiTi specimens with diameters between 180 and 350 µm and a nominal composition of Ni50.9Ti49.1 (at %) were processed by laser powder bed fusion in a first step. Secondly, they structures were characterized by optical and electron microscopy as well as micro tomography to investigate the interrelations between the process parameters, specimen diameters and microstructure. Each specimen was finally tested in a micro tensile machine to acquire the mechanical performance. The process strategy had, bes...
NiTi alloys possess distinct functional properties (i.e., shape memory effect and superelasticity) a...
Powder metallurgical (PM) production processes feature some potential advantages for NiTi compared t...
The ability to create complex geometries with tailored material properties has brought interest in u...
Nickel–titanium (NiTi) is a promising alloy for biomedical applications due to its unique combinatio...
Nickel–titanium (NiTi) is a shape-memory alloy, a type of material whose name is derived from its ab...
Laser powder bed fusion (PBF-LB) can be potentially used for producing patient-specific biomedical d...
Micro manufacturing using micro direct metal deposition was successfully implemented on NiTi powder ...
NiTi alloys are well known not only due to their exceptional shape-memory ability to recover their p...
NiTi components with reproducible and stable shape memory properties are attractive for various tech...
An experimental investigation of the micro and macromechanical transformation behavior of binary NiT...
<p>Parts made out of titanium alloys demonstrate anisotropic mechanical properties when manufactured...
In this research, a micro direct metal deposition process, newly developed as a potential method for...
Quality control and microstructure characterization are essential corner stones of the process optim...
Long-term fixation of biomedical implants is achievable by using porous materials. These kinds of ma...
In this study, an optimal selective laser melting (SLM) process for manufacturing dense NiTi alloy w...
NiTi alloys possess distinct functional properties (i.e., shape memory effect and superelasticity) a...
Powder metallurgical (PM) production processes feature some potential advantages for NiTi compared t...
The ability to create complex geometries with tailored material properties has brought interest in u...
Nickel–titanium (NiTi) is a promising alloy for biomedical applications due to its unique combinatio...
Nickel–titanium (NiTi) is a shape-memory alloy, a type of material whose name is derived from its ab...
Laser powder bed fusion (PBF-LB) can be potentially used for producing patient-specific biomedical d...
Micro manufacturing using micro direct metal deposition was successfully implemented on NiTi powder ...
NiTi alloys are well known not only due to their exceptional shape-memory ability to recover their p...
NiTi components with reproducible and stable shape memory properties are attractive for various tech...
An experimental investigation of the micro and macromechanical transformation behavior of binary NiT...
<p>Parts made out of titanium alloys demonstrate anisotropic mechanical properties when manufactured...
In this research, a micro direct metal deposition process, newly developed as a potential method for...
Quality control and microstructure characterization are essential corner stones of the process optim...
Long-term fixation of biomedical implants is achievable by using porous materials. These kinds of ma...
In this study, an optimal selective laser melting (SLM) process for manufacturing dense NiTi alloy w...
NiTi alloys possess distinct functional properties (i.e., shape memory effect and superelasticity) a...
Powder metallurgical (PM) production processes feature some potential advantages for NiTi compared t...
The ability to create complex geometries with tailored material properties has brought interest in u...