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Cyclic deformation and fatigue fracture.
Major topics: elasticity, plasticity, limit analysis, fatigue, fracture, and creep.
The potential for fatigue fracture is higher, and fatigue fracture has been experienced by patients.
Cleavage steps were found on the fatigue fracture surface.
Here we initiate a study of fatigue fracture of hydrogels.
The results showed that the shaft failed by fatigue fracture.
To place fatigue fracture in context, we apply monotonic, static, and cyclic load, and observe three types of fracture behavior: fast fracture, delayed fracture, and fatigue fracture.
Structural and machine parts subject to vibrations and other cyclic loading must be designed to avoid fatigue fracture.
Current projects include the assessment of fatigue fracture mechanisms and tribological performance of orthopedic biomaterials, as well as characterization of orthopedic tissues and associated devices.
Fatigue fracture of hydrogels is a topic ready for scientific studies and engineering advances.
Other factors which may potentiate a fatigue fracture are material design, implant positioning, and patient characteristics.
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