Preview

Endodontics Today

Advanced search

Laboratory substantiation of the efficiency of nanocomposite material prepolymerization heating

https://doi.org/10.36377/1683-2981-2020-18-1-15-20

Abstract

Aim. To evaluate the effectiveness of prepolymerization heating of composite filling materials.

Materials and methods. For the study, two composite filling materials Enamel plus HRi® dentin and enamel were used. During the tests, the coefficient of linear thermal expansion, glass transition temperature, Young's modulus and penetration depth, electron scanning microscopy were determined.

Results. According to the results of the study, the difference between heated and unheated dentin samples in terms of Young's modulus, as well as changes in the penetration depth in the samples of the original enamel and enamel after heating, was revealed.

Conclusions. In the course of the work, it was found that the material that underwent preliminary heat treatment is much less deformed under load than the material that does not have a thermal history.

About the Author

Z. S. Khabadze
RUDN University
Russian Federation

Ph.D., Associate Professor, Department of Therapeutic Dentistry

Moscow



References

1. Adamchik A.A. Appraisal of composite''s polymerization. Kuban Scientific Medical Bulletin. 2015. No1. 7-1.

2. Mamedli D.Z., Basek M.T., Lupashko A.I., Abaihanova M.A. Effect of preheating of light-cured composite materials on the depth of polymerization. Injinerniy Vestnik Dona, No. 2 (2018) (electronic issue).

3. Tauböck TT , Tarle Z , Marovic D , Attin T. Pre-heating of high-viscosity bulk-fill resin composites: effects on shrinkage force and monomer conversion. J Dent. 2015 Nov;43(11):1358-64.

4. Calheiros FC 1 , Daronch M 2 , Rueggeberg FA 3 , Braga RR/Effect of temperature on composite polymerization stress and degree of conversion. Dent Mater. 2014 Jun;30(6):613-8

5. D. Dionysopoulos, C. Papadopoulos, E. Koliniotou-Koumpia. Effect of temperature, curing time, and filler composition on surface microhardness of composite resins. J Conserv Dent. 2015 Mar-Apr; 18(2): 114–118.

6. Jessika Calixto da SILVA, REGES Rogério Vieira, Inara Carneiro Costa REGE, Carlos Alberto dos Santos Cruz, Luis Geraldo VAZ, Carlos ESTRELA, and Fabrizio Luscino Alves de Castro. Pre-heating mitigates composite degradation. J Appl Oral Sci. 2015 Nov-Dec; 23 (6): 571-579.

7. State All-Union standard 32618.2-2014. Plastics. Thermomechanical Analysis (TMA). Part 2. Determination of the coefficient of linear thermal expansion and glass transition temperature. M. Standartinform, 2014. -12 p.


Review

For citations:


Khabadze Z.S. Laboratory substantiation of the efficiency of nanocomposite material prepolymerization heating. Endodontics Today. 2020;18(1):15-20. (In Russ.) https://doi.org/10.36377/1683-2981-2020-18-1-15-20



Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 1683-2981 (Print)
ISSN 1726-7242 (Online)