In order to improve the stiffness characteristics of orthopedic devices implants that mimic the mechanical behavior of bone need to be considered. With the capability of Additive layer manufacturing processes to produce orthopedic implants with tailored mechanical properties are needed. This paper discusses finite element (FE) analysis and mechanical characterization of porous medical grade cobalt chromium (CoCr) alloy in cubical structures with volume based porosity ranging between 60% to 80% produced using direct metal laser sintering (DMLS) process. ANSYS 14.0 FE modelling software was used to predict the effective elastic modulus of the samples and comparisons were made with the experimental data. The effective mechanical properties of ...
Cobalt–chromium–molybdenum alloys with porous structures can be fabricated by additive manufacturin...
Lattice structures are candidates for innovative design of orthopedic implants and other highly func...
Direct metal laser sintering (DMLS) is a technique to manufacture complex functional mechanical part...
The recent introduction of selective laser melting (SLM) for the processing of medical grade cobalt ...
In order to improve the stress shielding characteristics of orthopaedic devices implants that mimic ...
The use of cobalt chromium (CoCr) in orthopaedic joint replacement shields the peri-implant bone str...
Metallic orthopedic implants to replace or generate lost bones caused by traumatic road traffic inju...
To minimize the stress shielding effect of metallic biomaterials in mimicking bone, the body-centere...
One of the main biomechanical causes for aseptic failure of orthopaedic implants is the stress shiel...
Orthodontic implants have been a major focus through mechanical and biological performance in advanc...
This work compares the stress distribution in the periprosthetic cortical bone when implanted with C...
In orthopaedic surgery, cobalt chromium (CoCr) based alloys are used extensively for their high stre...
Solid metallic hip implants have much higher stiffness than the femur bone, causing stress-shielding...
STATEMENT OF PROBLEM: Cobalt-chromium (Co-Cr) alloys possess beneficial mechanical properties becaus...
Over the last decade, advances in additive manufacturing have allowed to obtain complex 3D porous la...
Cobalt–chromium–molybdenum alloys with porous structures can be fabricated by additive manufacturin...
Lattice structures are candidates for innovative design of orthopedic implants and other highly func...
Direct metal laser sintering (DMLS) is a technique to manufacture complex functional mechanical part...
The recent introduction of selective laser melting (SLM) for the processing of medical grade cobalt ...
In order to improve the stress shielding characteristics of orthopaedic devices implants that mimic ...
The use of cobalt chromium (CoCr) in orthopaedic joint replacement shields the peri-implant bone str...
Metallic orthopedic implants to replace or generate lost bones caused by traumatic road traffic inju...
To minimize the stress shielding effect of metallic biomaterials in mimicking bone, the body-centere...
One of the main biomechanical causes for aseptic failure of orthopaedic implants is the stress shiel...
Orthodontic implants have been a major focus through mechanical and biological performance in advanc...
This work compares the stress distribution in the periprosthetic cortical bone when implanted with C...
In orthopaedic surgery, cobalt chromium (CoCr) based alloys are used extensively for their high stre...
Solid metallic hip implants have much higher stiffness than the femur bone, causing stress-shielding...
STATEMENT OF PROBLEM: Cobalt-chromium (Co-Cr) alloys possess beneficial mechanical properties becaus...
Over the last decade, advances in additive manufacturing have allowed to obtain complex 3D porous la...
Cobalt–chromium–molybdenum alloys with porous structures can be fabricated by additive manufacturin...
Lattice structures are candidates for innovative design of orthopedic implants and other highly func...
Direct metal laser sintering (DMLS) is a technique to manufacture complex functional mechanical part...