Triply periodic minimal surfaces (TPMSs) have attracted increasing attention for their high manufacturability, biocompatibility, and mechanical properties. In this work, graded Gyroid cellular structures (GCSs) with varying gradient directions were mathematically designed and manufactured via selective laser melting (SLM). The effect of gradients on manufacturing fidelity, i.e. degree of conformity between the manufactured part and engineering design, of these structures was investigated using X-ray computed tomography (CT). The results indicate that relative density and volume fraction of as-built GCSs are higher than those specified in the engineering design due to strut diameters being larger than specification and the presence of bonded...
Topology optimization offers a possibility to derive load-compliant structures. These structures ten...
The use of Additive Manufacturing (AM) technologies is rapidly expanding in biomedical engineering, ...
For a wider medical/dental and aerospace applications of 3D printed parts made using selective laser...
Triply periodic minimal surfaces (TPMSs) have attracted increasing attention for their high manufact...
© 2018 The Authors Functional graded cellular materials (FGCMs) have attracted increasing attentions...
Functional graded cellular materials (FGCMs) have attracted increasing attentions for their improved...
Triply Periodic Minimal Surface (TPMS) structures fabricated via Additive Manufacturing (AM) have re...
The development of additive manufacturing techniques has made it possible to produce porous structur...
Cellular structures with controllable mechanical properties and porous architecture are the most pro...
In this study, deviations for the porosity level of the Ti-6Al-4V functionally graded porous structu...
This systematic comparison between sheet-based-TPMS and strut-based ordered and disordered Lattice t...
The control of structure formation of additive manufacturing simplifies the fabrication of functiona...
Meta-biomaterial with rationally design geometrical features provides an exciting opportunity to red...
Cellular structures are widely used in many engineering applications, because of their light weight,...
International audienceFunctionally Graded Cellular Materials (FGCM), characterized by a gradual chan...
Topology optimization offers a possibility to derive load-compliant structures. These structures ten...
The use of Additive Manufacturing (AM) technologies is rapidly expanding in biomedical engineering, ...
For a wider medical/dental and aerospace applications of 3D printed parts made using selective laser...
Triply periodic minimal surfaces (TPMSs) have attracted increasing attention for their high manufact...
© 2018 The Authors Functional graded cellular materials (FGCMs) have attracted increasing attentions...
Functional graded cellular materials (FGCMs) have attracted increasing attentions for their improved...
Triply Periodic Minimal Surface (TPMS) structures fabricated via Additive Manufacturing (AM) have re...
The development of additive manufacturing techniques has made it possible to produce porous structur...
Cellular structures with controllable mechanical properties and porous architecture are the most pro...
In this study, deviations for the porosity level of the Ti-6Al-4V functionally graded porous structu...
This systematic comparison between sheet-based-TPMS and strut-based ordered and disordered Lattice t...
The control of structure formation of additive manufacturing simplifies the fabrication of functiona...
Meta-biomaterial with rationally design geometrical features provides an exciting opportunity to red...
Cellular structures are widely used in many engineering applications, because of their light weight,...
International audienceFunctionally Graded Cellular Materials (FGCM), characterized by a gradual chan...
Topology optimization offers a possibility to derive load-compliant structures. These structures ten...
The use of Additive Manufacturing (AM) technologies is rapidly expanding in biomedical engineering, ...
For a wider medical/dental and aerospace applications of 3D printed parts made using selective laser...