21 results on '"SZMYTKA, F."'
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2. Sagittal split ramus osteotomy-related biomechanical properties
3. Probabilistic Low Cycle Fatigue criterion for nodular cast-irons
4. Fatigue crack growth in compacted and spheroidal graphite cast irons
5. Plastic zone evolution during fatigue crack growth: Digital image correlation coupled with finite elements method
6. Comparison of microstructure features and mechanical properties for additive manufactured and wrought nickel alloys 625
7. Fatigue crack growth law identification by Digital Image Correlation and electrical potential method for ductile cast iron
8. A time increment control for return mapping algorithm applied to cyclic viscoplastic constitutive models
9. Thermal fatigue analysis of automotive Diesel piston: Experimental procedure and numerical protocol
10. Probability density functions: From porosities to fatigue lifetime
11. Thermo-mechanical fatigue resistance characterization and materials ranking from heat-flux-controlled tests. Application to cast-irons for automotive exhaust part
12. Constitutive models for bcc engineering iron alloys exposed to thermal–mechanical fatigue
13. An implicit integration procedure for an elasto-viscoplastic model and its application to thermomechanical fatigue design of automotive parts
14. Cyclic behaviour of short glass fibre reinforced polyamide: Experimental study and constitutive equations
15. Cyclic behavior of short glass fiber reinforced polyamide for fatigue life prediction of automotive components
16. Perfusion-decellularization of vascularized bone matrix: Application to the porcine forelimb
17. Probabilistic thermal-mechanical fatigue criterion for lost foam casting aluminium alloys based on 2D/3D porosities distribution
18. Biomechanical properties of the human mandibular cadaveric bone related to ramus sagittal osteotomy.
19. TMF criteria for Lost Foam Casting aluminum alloys.
20. A novel characterisation protocol of mechanical interactions between the ground and a tibial prosthesis for long jump.
21. Decellularized vascularized bone grafts: A preliminary in vitro porcine model for bioengineered transplantable bone shafts.
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