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J Dent Res Dent Clin Dent Prospects. 2014;8(1): 40-44.
doi: 10.5681/joddd.2014.007
PMID: 25024838
PMCID: PMC4091698
  Abstract View: 923
  PDF Download: 546

Original Research

Hardness Evaluation of Composite Resins Cured with QTH and LED

Behnaz Esmaeili*, Hengameh Safarcherati, Assila Vaezi
*Corresponding Author: Email: dr.b.esmaeili@gmail.com

Abstract

Background and aims. Today light cured composites are widely used. Physical and mechanical properties of compos-ites are related to the degree of conversion. Light curing unit (LCU) is an important factor for composite polymerization. Aim of this study is evaluation of composite resins hardness using halogen and LED light curing units. Materials and methods. In this study, 30 samples of Filtek Z250 and C-Fill composite resins were provided. Samples were light cured with Ultralume2, Valo and Astralis7. Vickers hardness number (VHN) was measured in 0, 1, 2 mm depth. Statistical analysis used: Data were analysed by SPSS software and compared with each other by T-test, one-way and two-way ANOVA and Post-hoc Tukey test. Results. In Filtek Z250, at top surface, VHN of Ultralume2 was higher than VHN of Valo (P = 0.02) and Astralis7 (P =0.04), but in depth of 1, 2 mm, VHN of Ultralume2 and Astralis7 were almost the same and both LCUs were more than Valo which the difference between Ultralume2 and Valo was significant in depth of 1mm (0.05) and 2mm (0.02). In C-Fill composite, at top surface, Astralis7 showed higher VHN, but in depth of 2 mm, performance of all devices were rather simi-lar. Conclusion. In Z250, which contains camphorquinone initiator, light cure LED Ultra-lume2 with narrow wavelength showed higher hardness number than Valo. In C-fill, in top surface, Astralis7 with more exposure time, resulted higher VHN. But In depth of 2 mm, various light curing devices had rather similar hardness number.
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Submitted: 18 Jun 2014
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