Evaluation of the Transverse Strength and Elastic Modulus of High Impact Denture Base Material
Introduction: High fracture resistance of prostheses are well accepted by both patients and dentists to have a proper restoration of the dentition. The research designated assess polymerization time effect distinct and complete temperatures on mechanical properties (denture base resin) of a hi...
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Mashhad University of Medical Sciences
2020-09-01
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doaj-ed6b10a615d846a5b8a2e212803c46842020-11-25T03:28:54ZengMashhad University of Medical SciencesJournal of Dental Materials and Techniques2322-41502252-03172020-09-019310711510.22038/jdmt.2020.45325.133616372Evaluation of the Transverse Strength and Elastic Modulus of High Impact Denture Base Materialgonca deste0rukiye durkan1perihan oyar2afyonkarahisar health sciences university, faculty of dentistry, department of prosthodonticsafyonkarahisar health sciences university, faculty of dentistry, department of prosthodonticsDepartment of Dental Prostheses Technology, Health Services Vocational High School, Hacettepe University, Ankara, TurkeyIntroduction: High fracture resistance of prostheses are well accepted by both patients and dentists to have a proper restoration of the dentition. The research designated assess polymerization time effect distinct and complete temperatures on mechanical properties (denture base resin) of a high strength. The research purpose is to assess and compare the procedure used in polymerization distinct effect autoclave on the elastic modulus and transverse strength of a high strength acrylic resin to the conventional heat polymerizing. Methods: Rectangular sample of ninety-one polymarised high heat strength denture base resin were created. Polymerized sample done by hot water regarded as control group and the other groups were polymerized in autoclave at different temperatures and time lenghts. After deflasking of sample before procedure it was kept forty eight hours in water. Three parameters were used when conducting transverse strength test bending using calibrated universal testing machine with a load of 500 kg cell and a crosshead speed of 5 mm/min. One-way ANOVA was used in assessing transverse strength and elastic modulus data. And for comparison of the groups application of Tukey HSD trial has been seen appropriate (p <0.05). Results: Specimens that polymerized by autoclave at 130ºC for 20 and 30 minutes showed significantly better characteristics compared to the other groups. Conclusion: Upgrading of base resins transverse strength is required because the research indicated autoclave polymerization at 130°C for 20 and 30 minutes may be an alternative polymerization method.http://jdmt.mums.ac.ir/article_16372_1eb9810b3f1d66a284369e070f82d502.pdfacrylic resinspolymerizationelastic modulus |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
gonca deste rukiye durkan perihan oyar |
spellingShingle |
gonca deste rukiye durkan perihan oyar Evaluation of the Transverse Strength and Elastic Modulus of High Impact Denture Base Material Journal of Dental Materials and Techniques acrylic resins polymerization elastic modulus |
author_facet |
gonca deste rukiye durkan perihan oyar |
author_sort |
gonca deste |
title |
Evaluation of the Transverse Strength and Elastic Modulus of High Impact Denture Base Material |
title_short |
Evaluation of the Transverse Strength and Elastic Modulus of High Impact Denture Base Material |
title_full |
Evaluation of the Transverse Strength and Elastic Modulus of High Impact Denture Base Material |
title_fullStr |
Evaluation of the Transverse Strength and Elastic Modulus of High Impact Denture Base Material |
title_full_unstemmed |
Evaluation of the Transverse Strength and Elastic Modulus of High Impact Denture Base Material |
title_sort |
evaluation of the transverse strength and elastic modulus of high impact denture base material |
publisher |
Mashhad University of Medical Sciences |
series |
Journal of Dental Materials and Techniques |
issn |
2322-4150 2252-0317 |
publishDate |
2020-09-01 |
description |
Introduction: High fracture resistance of prostheses are well accepted by both patients and dentists to have a proper restoration of the dentition. The research designated assess polymerization time effect distinct and complete temperatures on mechanical properties (denture base resin) of a high strength. The research purpose is to assess and compare the procedure used in polymerization distinct effect autoclave on the elastic modulus and transverse strength of a high strength acrylic resin to the conventional heat polymerizing. Methods: Rectangular sample of ninety-one polymarised high heat strength denture base resin were created. Polymerized sample done by hot water regarded as control group and the other groups were polymerized in autoclave at different temperatures and time lenghts. After deflasking of sample before procedure it was kept forty eight hours in water. Three parameters were used when conducting transverse strength test bending using calibrated universal testing machine with a load of 500 kg cell and a crosshead speed of 5 mm/min. One-way ANOVA was used in assessing transverse strength and elastic modulus data. And for comparison of the groups application of Tukey HSD trial has been seen appropriate (p <0.05). Results: Specimens that polymerized by autoclave at 130ºC for 20 and 30 minutes showed significantly better characteristics compared to the other groups. Conclusion: Upgrading of base resins transverse strength is required because the research indicated autoclave polymerization at 130°C for 20 and 30 minutes may be an alternative polymerization method. |
topic |
acrylic resins polymerization elastic modulus |
url |
http://jdmt.mums.ac.ir/article_16372_1eb9810b3f1d66a284369e070f82d502.pdf |
work_keys_str_mv |
AT goncadeste evaluationofthetransversestrengthandelasticmodulusofhighimpactdenturebasematerial AT rukiyedurkan evaluationofthetransversestrengthandelasticmodulusofhighimpactdenturebasematerial AT perihanoyar evaluationofthetransversestrengthandelasticmodulusofhighimpactdenturebasematerial |
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