Results 41 to 50 of about 14,644 (173)
Magnesium-based alloys are a modern material for the production of biodegradable (self-dissolving) surgical implants. Magnesium is a metal with the most negative electrode potential of all structural materials: −2.37 V.
Pavel N. Myagkikh +4 more
doaj +1 more source
Influence of Recast Layer on the Fatigue Life of Ti6Al4V Processed by Electric Discharge Machining [PDF]
In this research work, Ti6Al4V alloy material was subjected to electric discharge machining (EDM) and its fatigue life was investigated at low cycle fatigue mode.
A. Eakambaram, M. Anthony Xavior
doaj +1 more source
Oxidation behaviour of Ti6Al4V and titanium based-matrix composites (TiC/Ti6Al4V and TiB/Ti6Al4V)
This study explores the oxidation behaviour of Ti64 and titanium-based matrix composites, specifically TiC/Ti64 and TiB/Ti64. Through experimental analysis for oxidation tests using the Ultra furnace, the oxidation characteristics were examined to understand the behaviour of these materials under elevated temperatures (400ºC, 500ºC and 600ºC for 6 ...
Kgomo Hosia +5 more
openaire +2 more sources
Influenza dell'anisotropia sulla formabilità della lamiera di Ti6Al4V. Anisotropy influence on Ti6Al4V sheet formability [PDF]
Studio della formabilità della lamiera di Ti6Al4V in cinque condizioni di stato di tensione (secondo triassialità e parametro di Lode), e due temperature, ponendo il focus sull'influenza dell'anisotropia della lamiera, eseguendo test di trazione a 0 ...
Bettiol, Nicola
core
Microstructural analysis on the effects of heat treatments apolide to TI6Al4V alloys sheet
reservedLa tesi si occupa di osservare la microstruttura ottenuta tramite particolari trattamenti termici su lamierini in TI6Al4V. Andando a eseguire i vari passaggi atti alla riuscita dell’esperienza per poi analizzare le caratteristiche ottenute dalla ...
GIUSTI, RICCARDO
core
Selective laser fusion (SLM) is an emerging 3D printing technology that can greatly shorten the processing cycle and reduce the production cost of medical implants, thus offering broad prospects for application in the biomedical field.
Yao WANG +5 more
doaj +1 more source
Functionally graded metal–ceramic femoral stems are engineered through continuous UMAT‐based stiffness tailoring, eliminating discrete material interfaces while enhancing biomechanical compatibility. Low‐index power‐law gradation optimizes load transfer, reduces stress shielding, and controls implant–bone micromotion, highlighting a materials‐design ...
Rihem Nouira, Sameh Elleuch, Hanen Jrad
wiley +1 more source
The Prediction of Surface Temperature in Drilling of Ti6Al4V
Abstract Titanium and its alloys are attractive materials due to their unique high strength-weight ratio that is maintained at elevated temperatures and their exceptional corrosion resistance. The major application of titanium has been in the aerospace industry. However, the focus shift of market trends from military to commercial and aerospace to
Işik B., Kentli A.
openaire +3 more sources
El arenado de la aleación Ti6Al4V es un tratamiento orientado a la mejora de la fijación mecánica de los implantes. Sin embargo, dicho tratamiento contribuye a una disminución de la resistencia a la fatiga del material. En este trabajo se ha determinado,
M. Multigner +4 more
doaj +1 more source
Controlling the Field Assisted Sintering Technology (FAST) parameters, dwell temperature and cooling rate, significantly influences the microstructural evolution in titanium aluminide GE4822. Significant γ‐lamellar colonies develop only upon cooling through the α‐transus.
Jack Krohn, James Pepper, Martin Jackson
wiley +1 more source

