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   numerical evaluation of a porous tibial-knee implant using gyroid structure  
   
نویسنده eltlhawy basma ,fouda noha ,eldesouky ibrahim
منبع journal of biomedical physics and engineering - 2022 - دوره : 12 - شماره : 1 - صفحه:75 -82
چکیده    Background: porous materials are recommended for orthopedic applications as they eliminate issues of interfacial instability with tissues and reduce mechanical mismatch of the young’s modulus. objective: the current research provides a finite element analysis (fea) to investigate porous gyroid ti6al4v structure compared to a solid stem model for human tibial-knee implantation of total knee replacement (tkr). material and methods: in this study, the implant proximal portion was designed as porous gyroid ti6al4v structure with 500 μm pore size. catia v5r18 was used for modeling both gyroid and full solid models. structural analysis was carried out using ansys r18.1 to evaluate the implant performance. results: after gyroid implantation, the maximum von- mises stress obtained under the tibial tray was increased to 10.081 mpa. also, the maximum shear stress at the stem/bone interface was reduced to 0.7347 mpa. the stress concentration at the stem tip and the bone strain energy were also improved. the minimum factor of safety is 4.6 for the gyroid porous implant. a proof of concept model was additively manufactured successfully with pore size 577.7733 ± 34.762 μm. conclusion: the results indicated enhanced clinical performance of the porous tibial-knee implant compared to the solid titanium implant via increasing the maximum von-mises bone stresses and decreasing the maximum shear stress at the bone/ implant interface.
کلیدواژه total knee replacement; porous; knee prosthesis; titanium alloy (ti6al4v); von-mises stress; shear stress
آدرس higher future institute of engineering and technology, department of mechanical engineering, iran, mansoura university, faculty of engineering, department of production and mechanical design engineering, iran, mansoura university, faculty of engineering, department of production and mechanical design engineering, iran
پست الکترونیکی eng.b.eltlhawy@hotmail.com
 
     
   
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