In order to investigate the effect of energy density in selective laser melting (SLM) forming on the properties of porous bone scaffolds made of 316L stainless steel, the mechanism of different construction energy densities on the residual stress and microstructure of cubic porous bone scaffolds was investigated by combining experiments and finite element analysis. The results showed that many defects were formed in the scaffolds when too high or too low energy densities were used to form the porous bone scaffolds. In terms of microstructure, inappropriate energy densities caused some grains to appear coarse and dispersed, which directly led to a reduction in the corrosion resistance of the scaffolds. Most importantly, the stress and temper...
Developments in selective laser melting (SLM) have enabled the fabrication of periodic cellular latt...
Steel porous materials are multifunctional lightweight materials with a great potential in several a...
© 2020 by the authors. To manufacture custom medical parts or scaffolds with reduced defects and hig...
In order to investigate the effect of energy density in selective laser melting (SLM) forming on the...
To investigate the effect of selective laser melting (SLM) energy densities on the performance of po...
In the implantation of porous bone scaffolds, good mechanical properties of the scaffold are a prere...
The recent introduction of selective laser melting (SLM) for the processing of medical grade cobalt ...
Energy density, which directly impacts the properties of as-built parts, is a key factor in the meta...
A current challenge in bone tissue engineering is to create scaffolds with suitable mechanical prope...
Bone scaffolds created in porous structures manufactured using selective laser melting (SLM) are wid...
This study investigates the porosity and microhardness of 316L stainless steel samples fabricated by...
AbstractCobalt-base alloys are widely used in medical applications as is the hardest known biocompat...
The use of irregular porous structures in bone tissue engineering (BTE) has attracted increasing att...
Porous metals play essential roles in lowering the value of elastic modulus, achieving a modulus lik...
Bone defects are serious complications that are caused by extensive trauma or tumor. The traditional...
Developments in selective laser melting (SLM) have enabled the fabrication of periodic cellular latt...
Steel porous materials are multifunctional lightweight materials with a great potential in several a...
© 2020 by the authors. To manufacture custom medical parts or scaffolds with reduced defects and hig...
In order to investigate the effect of energy density in selective laser melting (SLM) forming on the...
To investigate the effect of selective laser melting (SLM) energy densities on the performance of po...
In the implantation of porous bone scaffolds, good mechanical properties of the scaffold are a prere...
The recent introduction of selective laser melting (SLM) for the processing of medical grade cobalt ...
Energy density, which directly impacts the properties of as-built parts, is a key factor in the meta...
A current challenge in bone tissue engineering is to create scaffolds with suitable mechanical prope...
Bone scaffolds created in porous structures manufactured using selective laser melting (SLM) are wid...
This study investigates the porosity and microhardness of 316L stainless steel samples fabricated by...
AbstractCobalt-base alloys are widely used in medical applications as is the hardest known biocompat...
The use of irregular porous structures in bone tissue engineering (BTE) has attracted increasing att...
Porous metals play essential roles in lowering the value of elastic modulus, achieving a modulus lik...
Bone defects are serious complications that are caused by extensive trauma or tumor. The traditional...
Developments in selective laser melting (SLM) have enabled the fabrication of periodic cellular latt...
Steel porous materials are multifunctional lightweight materials with a great potential in several a...
© 2020 by the authors. To manufacture custom medical parts or scaffolds with reduced defects and hig...