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Mechanical behavior of deep cryogenically treated martensitic shape memory nickel–titanium rotary endodontic instruments
OBJECTIVES: The aim of this study was to investigate the role of deep cryogenic treatment (DCT) on the cyclic fatigue resistance and cutting efficiency of martensitic shape memory (SM) nickel–titanium (NiTi) rotary endodontic instruments. MATERIALS AND METHODS: Seventy-five HyFlex(®) CM instruments...
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Formato: | Online Artículo Texto |
Lenguaje: | English |
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Medknow Publications & Media Pvt Ltd
2016
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4813432/ https://www.ncbi.nlm.nih.gov/pubmed/27095893 http://dx.doi.org/10.4103/1305-7456.178314 |
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author | Vinothkumar, Thilla Sekar Kandaswamy, Deivanayagam Prabhakaran, Gopalakrishnan Rajadurai, Arunachalam |
author_facet | Vinothkumar, Thilla Sekar Kandaswamy, Deivanayagam Prabhakaran, Gopalakrishnan Rajadurai, Arunachalam |
author_sort | Vinothkumar, Thilla Sekar |
collection | PubMed |
description | OBJECTIVES: The aim of this study was to investigate the role of deep cryogenic treatment (DCT) on the cyclic fatigue resistance and cutting efficiency of martensitic shape memory (SM) nickel–titanium (NiTi) rotary endodontic instruments. MATERIALS AND METHODS: Seventy-five HyFlex(®) CM instruments were randomly divided into three groups of 25 each and subjected to different DCT (–185° C) conditions based on soaking time: DCT 24 group: 24 h, DCT 6 group: 6 h, and control group. Each group was randomly subdivided for evaluation of cyclic fatigue resistance in custom-made artificial canals (n = 15) and cutting efficiency in plexiglass simulators (n = 10). The cyclic fatigue resistance was measured by calculating the number of cycles to failure (NCF) and cutting efficiency was measured using the loss of weight method. RESULTS: Increase in NCF of instruments in DCT 24 group was highly significant (P < 0.01; Tukey's honest significant difference). There was no difference in weight loss of plexiglass simulators in all the groups (P > 0.05; one-way analysis of variance). In conclusion, deep dry cryogenic treatment with 24 h soaking time significantly increases the cyclic fatigue resistance without affecting the cutting efficiency of SM NiTi endodontic instruments. MATERIALS AND METHODS: Seventy-five HyFlex(®) CM instruments were randomly divided into three groups of 25 each and subjected to different DCT (–185° C) conditions based on soaking time: DCT 24 group: 24 h, DCT 6 group: 6 h, and control group. Each group was randomly subdivided for evaluation of cyclic fatigue resistance in custom-made artificial canals (n = 15) and cutting efficiency in plexiglass simulators (n = 10). The cyclic fatigue resistance was measured by calculating the number of cycles to failure (NCF) and cutting efficiency was measured using the loss of weight method. RESULTS: Increase in NCF of instruments in DCT 24 group was highly significant (P < 0.01; Tukey's honest significant difference). There was no difference in weight loss of plexiglass simulators in all the groups (P > 0.05; one-way analysis of variance). In conclusion, deep dry cryogenic treatment with 24 h soaking time significantly increases the cyclic fatigue resistance without affecting the cutting efficiency of SM NiTi endodontic instruments. |
format | Online Article Text |
id | pubmed-4813432 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | Medknow Publications & Media Pvt Ltd |
record_format | MEDLINE/PubMed |
spelling | pubmed-48134322016-04-19 Mechanical behavior of deep cryogenically treated martensitic shape memory nickel–titanium rotary endodontic instruments Vinothkumar, Thilla Sekar Kandaswamy, Deivanayagam Prabhakaran, Gopalakrishnan Rajadurai, Arunachalam Eur J Dent Original Article OBJECTIVES: The aim of this study was to investigate the role of deep cryogenic treatment (DCT) on the cyclic fatigue resistance and cutting efficiency of martensitic shape memory (SM) nickel–titanium (NiTi) rotary endodontic instruments. MATERIALS AND METHODS: Seventy-five HyFlex(®) CM instruments were randomly divided into three groups of 25 each and subjected to different DCT (–185° C) conditions based on soaking time: DCT 24 group: 24 h, DCT 6 group: 6 h, and control group. Each group was randomly subdivided for evaluation of cyclic fatigue resistance in custom-made artificial canals (n = 15) and cutting efficiency in plexiglass simulators (n = 10). The cyclic fatigue resistance was measured by calculating the number of cycles to failure (NCF) and cutting efficiency was measured using the loss of weight method. RESULTS: Increase in NCF of instruments in DCT 24 group was highly significant (P < 0.01; Tukey's honest significant difference). There was no difference in weight loss of plexiglass simulators in all the groups (P > 0.05; one-way analysis of variance). In conclusion, deep dry cryogenic treatment with 24 h soaking time significantly increases the cyclic fatigue resistance without affecting the cutting efficiency of SM NiTi endodontic instruments. MATERIALS AND METHODS: Seventy-five HyFlex(®) CM instruments were randomly divided into three groups of 25 each and subjected to different DCT (–185° C) conditions based on soaking time: DCT 24 group: 24 h, DCT 6 group: 6 h, and control group. Each group was randomly subdivided for evaluation of cyclic fatigue resistance in custom-made artificial canals (n = 15) and cutting efficiency in plexiglass simulators (n = 10). The cyclic fatigue resistance was measured by calculating the number of cycles to failure (NCF) and cutting efficiency was measured using the loss of weight method. RESULTS: Increase in NCF of instruments in DCT 24 group was highly significant (P < 0.01; Tukey's honest significant difference). There was no difference in weight loss of plexiglass simulators in all the groups (P > 0.05; one-way analysis of variance). In conclusion, deep dry cryogenic treatment with 24 h soaking time significantly increases the cyclic fatigue resistance without affecting the cutting efficiency of SM NiTi endodontic instruments. Medknow Publications & Media Pvt Ltd 2016 /pmc/articles/PMC4813432/ /pubmed/27095893 http://dx.doi.org/10.4103/1305-7456.178314 Text en Copyright: © European Journal of Dentistry http://creativecommons.org/licenses/by-nc-sa/3.0 This is an open access article distributed under the terms of the Creative Commons Attribution NonCommercial ShareAlike 3.0 License, which allows others to remix, tweak, and build upon the work non commercially, as long as the author is credited and the new creations are licensed under the identical terms. |
spellingShingle | Original Article Vinothkumar, Thilla Sekar Kandaswamy, Deivanayagam Prabhakaran, Gopalakrishnan Rajadurai, Arunachalam Mechanical behavior of deep cryogenically treated martensitic shape memory nickel–titanium rotary endodontic instruments |
title | Mechanical behavior of deep cryogenically treated martensitic shape memory nickel–titanium rotary endodontic instruments |
title_full | Mechanical behavior of deep cryogenically treated martensitic shape memory nickel–titanium rotary endodontic instruments |
title_fullStr | Mechanical behavior of deep cryogenically treated martensitic shape memory nickel–titanium rotary endodontic instruments |
title_full_unstemmed | Mechanical behavior of deep cryogenically treated martensitic shape memory nickel–titanium rotary endodontic instruments |
title_short | Mechanical behavior of deep cryogenically treated martensitic shape memory nickel–titanium rotary endodontic instruments |
title_sort | mechanical behavior of deep cryogenically treated martensitic shape memory nickel–titanium rotary endodontic instruments |
topic | Original Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4813432/ https://www.ncbi.nlm.nih.gov/pubmed/27095893 http://dx.doi.org/10.4103/1305-7456.178314 |
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