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Fabrication of NiTi through additive manufacturing: A review
Nickel-titanium (NiTi) is an attractive alloy due to its unique functional properties (ie, shape
memory effect and superelasticity behaviors), low stiffness, biocompatibility, dam** …
memory effect and superelasticity behaviors), low stiffness, biocompatibility, dam** …
Decade of bio-inspired soft robots: A review
Soft robotics is an emerging field of robotics that focuses on the design of soft machines and
devices with effective human-machine interaction, high conformity, and environmental …
devices with effective human-machine interaction, high conformity, and environmental …
A review of shape memory alloy research, applications and opportunities
Shape memory alloys (SMAs) belong to a class of shape memory materials (SMMs), which
have the ability to 'memorise'or retain their previous form when subjected to certain stimulus …
have the ability to 'memorise'or retain their previous form when subjected to certain stimulus …
Origami-inspired active structures: a synthesis and review
Origami-inspired active structures: a synthesis and review - IOPscience Skip to content IOP
Science home Accessibility Help Search Journals Journals list Browse more than 100 science …
Science home Accessibility Help Search Journals Journals list Browse more than 100 science …
A review on additive manufacturing of shape-memory materials for biomedical applications
Shape-memory materials (SMMs) are characterized by their unique ability to remember and
recover their shape in response to external stimuli. Over recent decades, the use of SMMs in …
recover their shape in response to external stimuli. Over recent decades, the use of SMMs in …
3D printing in biomedical engineering: Processes, materials, and applications
Three-dimensional (3D) printing as a powerful manufacturing platform has been
increasingly used in biomedical engineering over the past two decades. Such technologies …
increasingly used in biomedical engineering over the past two decades. Such technologies …
A new look at biomedical Ti-based shape memory alloys
Shape memory alloys (SMAs) are materials that exhibit a distinct thermomechanical
coupling, one that gives rise to a wide variety of applications across a broad range of fields …
coupling, one that gives rise to a wide variety of applications across a broad range of fields …
Biomedical applications of shape memory alloys
Shape memory alloys, and in particular NiTi alloys, are characterized by two unique
behaviors, thermally or mechanically activated: the shape memory effect and pseudo-elastic …
behaviors, thermally or mechanically activated: the shape memory effect and pseudo-elastic …
On the development of high quality NiTi shape memory and pseudoelastic parts by additive manufacturing
Additive manufacturing provides an attractive processing method for nickel–titanium (NiTi)
shape memory and pseudoelastic parts. In this paper, we show how the additive …
shape memory and pseudoelastic parts. In this paper, we show how the additive …
Biomedical production of implants by additive electro-chemical and physical processes
Biomanufacturing integrates life science and engineering fundamentals to produce
biocompatible products enhancing the quality of life. The state-of-the-art of this rapidly …
biocompatible products enhancing the quality of life. The state-of-the-art of this rapidly …