Bahia et al., 2005 - Google Patents
Physical and mechanical characterization and the influence of cyclic loading on the behaviour of nickel‐titanium wires employed in the manufacture of rotary …Bahia et al., 2005
View PDF- Document ID
- 11901663750109619492
- Author
- Bahia M
- Martins R
- Gonzalez B
- Buono V
- Publication year
- Publication venue
- International Endodontic Journal
External Links
Snippet
Aim To analyse the influence of cyclic loading on the mechanical behaviour of nickel‐ titanium (NiTi) wires employed in the manufacture of ProFile rotary endodontic instruments. Methodology Nickel‐titanium wires, 1.2 mm in diameter, taken from the production line of …
- 229910001000 nickel titanium 0 title abstract description 52
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Bahia et al. | Physical and mechanical characterization and the influence of cyclic loading on the behaviour of nickel‐titanium wires employed in the manufacture of rotary endodontic instruments | |
Hou et al. | Phase transformation behaviour and bending property of twisted nickel–titanium endodontic instruments | |
Yahata et al. | Effect of heat treatment on transformation temperatures and bending properties of nickel–titanium endodontic instruments | |
Zhou et al. | An overview of the mechanical properties of nickel–titanium endodontic instruments | |
Tabassum et al. | Nickel-titanium rotary file systems: what’s new? | |
Pereira et al. | Mechanical behavior of M-Wire and conventional NiTi wire used to manufacture rotary endodontic instruments | |
Plotino et al. | Fatigue resistance of rotary instruments manufactured using different nickel–titanium alloys: a comparative study | |
Peters et al. | An in vitro assessment of the physical properties of novel Hyflex nickel–titanium rotary instruments | |
Miyai et al. | Influence of phase transformation on the torsional and bending properties of nickel–titanium rotary endodontic instruments | |
Shen et al. | Phase transformation behavior and mechanical properties of thermomechanically treated K3XF nickel-titanium instruments | |
Hayashi et al. | Phase transformation behaviour and bending properties of hybrid nickel–titanium rotary endodontic instruments | |
Braga et al. | Impact of heat treatments on the fatigue resistance of different rotary nickel-titanium instruments | |
Shen et al. | H y F lex nickel–titanium rotary instruments after clinical use: metallurgical properties | |
Shen et al. | Metallurgical characterization of controlled memory wire nickel-titanium rotary instruments | |
Shim et al. | Mechanical and metallurgical properties of various nickel‐titanium rotary instruments | |
Pelton et al. | Rotary-bending fatigue characteristics of medical-grade Nitinol wire | |
Zinelis et al. | A metallurgical characterization of ten endodontic Ni‐Ti instruments: assessing the clinical relevance of shape memory and superelastic properties of Ni‐Ti endodontic instruments | |
Hieawy et al. | Phase transformation behavior and resistance to bending and cyclic fatigue of ProTaper Gold and ProTaper Universal instruments | |
Shen et al. | Current challenges and concepts of the thermomechanical treatment of nickel-titanium instruments | |
Viana et al. | Influence of sterilization on mechanical properties and fatigue resistance of nickel–titanium rotary endodontic instruments | |
Ounsi et al. | Evolution of nickel-titanium alloys in endodontics | |
Santos et al. | Effects of R‐Phase on Mechanical Responses of a Nickel‐Titanium Endodontic Instrument: Structural Characterization and Finite Element Analysis | |
Silva et al. | Influence of heat treatment on torsional resistance and surface roughness of nickel‐titanium instruments | |
Young et al. | Predicting in vivo failure of pseudoelastic NiTi devices under low cycle, high amplitude fatigue | |
Alapati et al. | Micro-XRD and temperature-modulated DSC investigation of nickel–titanium rotary endodontic instruments |