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Cyclic fatigue analysis of twisted file rotary NiTi instruments used in reciprocating motion
Author(s) -
Gambarini G.,
Gergi R.,
Naaman A.,
Osta N.,
Al Sudani D.
Publication year - 2012
Publication title -
international endodontic journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.988
H-Index - 119
eISSN - 1365-2591
pISSN - 0143-2885
DOI - 10.1111/j.1365-2591.2012.02036.x
Subject(s) - reciprocating motion , cyclic stress , nickel titanium , fracture (geology) , rotation (mathematics) , materials science , kinematics , radius , clockwise , orthodontics , mathematics , structural engineering , composite material , computer science , mechanical engineering , physics , engineering , geometry , medicine , shape memory alloy , computer security , classical mechanics , gas compressor
Gambarini G, Gergi R, Naaman A, Osta N, Al Sudani D. Cyclic fatigue analysis of twisted file rotary NiTi instruments used in reciprocating motion. International Endodontic Journal ,  45 , 802–806, 2012. Abstract Aim  To evaluate the cyclic fatigue fracture resistance of engine‐driven twisted file (TF) instruments under reciprocating movement. Methodology  A sample of 30 size 25, 0.08 taper NiTi TF instruments was tested in a simulated canal with 60˚ angle of curvature and a 3 mm radius. During mechanical testing, different movement kinematics were used at a constant speed, which resulted in three experimental groups (each group n  = 10). The instruments from the first group (G1) were rotated until fracture occurred. The instruments in the second (G2) and third group (G3) were driven under reciprocating movement with different angles of reciprocation. The time of fracture for each instrument was measured, and statistical analysis was performed using one‐way analysis of variance followed by Tukey’s Honestly Significant Different test. Results  Reciprocating movement resulted in a significantly longer cyclic fatigue life ( P  < 0.0001) when compared with continuous rotation. No difference was found between reciprocation 150° clockwise/30° counterclockwise (CW/CCW) and 30° CW/150° CCW. Conclusions  The reciprocating movement was associated with an extended cyclic fatigue life of the TF size 0.25, 0.08 taper instruments in comparison with conventional rotation.

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