Bone scaffolds created in porous structures manufactured using selective laser melting (SLM) are widely used in tissue engineering, since the elastic moduli of the scaffolds are easily adjusted according to the moduli of the tissues, and the large surfaces the scaffolds provide are beneficial to cell growth. SLM-built gyroid structures composed of 316L stainless steel have demonstrated superior properties such as good corrosion resistance, strong biocompatibility, self-supported performance, and excellent mechanical properties. In this study, gyroid structures of different volume fraction were modelled and manufactured using SLM; the mechanical properties of the structures were then investigated under quasi-static compression loads. The ela...
AbstractSelective laser melting (SLM) is a promising technique for the production of biometallic sca...
Porous metal structures have emerged as a promising solution in repairing and replacing damaged bone...
Scaffolds for bone regeneration have been investigated as bone substitutes in critical sized bone de...
To investigate the effect of selective laser melting (SLM) energy densities on the performance of po...
AbstractBone tissue engineering has evolved owing to new opportunities of deep customisation offered...
Selective laser melting is a promising additive manufacturing technology for manufacturing porous me...
In the implantation of porous bone scaffolds, good mechanical properties of the scaffold are a prere...
This is an accepted manuscript of an article published by Elsevier in Journal of the Mechanical Beha...
Additive manufacturing has been used to develop a variety of scaffold designs for clinical and indus...
Bone-related defects that cannot heal without significant surgical intervention represent a signific...
AbstractScaffolds are essential in bone tissue engineering, as they provide support to cells and gro...
Bone scaffolds are widely used as one of the main bone substitute materials. However, many bone scaf...
Bone scaffolds are widely used as one of the main bone substitute materials. However, many bone scaf...
In order to investigate the effect of energy density in selective laser melting (SLM) forming on the...
Functionally graded materials raise considerable interest in the biomedical research. In particular,...
AbstractSelective laser melting (SLM) is a promising technique for the production of biometallic sca...
Porous metal structures have emerged as a promising solution in repairing and replacing damaged bone...
Scaffolds for bone regeneration have been investigated as bone substitutes in critical sized bone de...
To investigate the effect of selective laser melting (SLM) energy densities on the performance of po...
AbstractBone tissue engineering has evolved owing to new opportunities of deep customisation offered...
Selective laser melting is a promising additive manufacturing technology for manufacturing porous me...
In the implantation of porous bone scaffolds, good mechanical properties of the scaffold are a prere...
This is an accepted manuscript of an article published by Elsevier in Journal of the Mechanical Beha...
Additive manufacturing has been used to develop a variety of scaffold designs for clinical and indus...
Bone-related defects that cannot heal without significant surgical intervention represent a signific...
AbstractScaffolds are essential in bone tissue engineering, as they provide support to cells and gro...
Bone scaffolds are widely used as one of the main bone substitute materials. However, many bone scaf...
Bone scaffolds are widely used as one of the main bone substitute materials. However, many bone scaf...
In order to investigate the effect of energy density in selective laser melting (SLM) forming on the...
Functionally graded materials raise considerable interest in the biomedical research. In particular,...
AbstractSelective laser melting (SLM) is a promising technique for the production of biometallic sca...
Porous metal structures have emerged as a promising solution in repairing and replacing damaged bone...
Scaffolds for bone regeneration have been investigated as bone substitutes in critical sized bone de...