Literature DB >> 23560255

In vitro comparison of mechanical properties and degree of cure of a self-adhesive and four novel flowable composites.

Pascal Czasch1, Nicoleta Ilie.   

Abstract

PURPOSE: To compare a self-adhesive with two low-shrinkage and two regular flowable resin-based composites (RBCs) in terms of degree of conversion (DC) as well as micromechanical (indentation modulus [E]; Vickers hardness [HV]) and macromechanical properties (flexural strength [σ], modulus of elasticity [Eflexural]).
MATERIALS AND METHODS: DC was investigated by an ATR-FTIR spectrometer at clinically relevant filling depths (0.1 mm, 2 mm, 4 mm, 6 mm bulk, 6 mm incremental) and irradiation times (10 s, 20 s, 40 s). Micro- and macromechanical properties were measured with an automatic microhardness indenter and a three-point bending test device after curing the specimens for 20 s and storing them in distilled water for 24 h at 37°C. Fillers were visualized using a field emission scanning electron microscope (FE-SEM). Results were evaluated using one-way ANOVA, Tukey's HSD post-hoc test, Pearson's correlation and a multivariate analysis (α = 0.05). A Weibull analysis was used to assess σ.
RESULTS: N'Durance Dimer flow (65.66%) reached the highest DC (at 2 mm depth, 20 s irradiation). In terms of macromechanical properties, EcuSphere-Flow (129.82 MPa) for σ and Synergy D6 Flow (3.74 GPa) for Eflexural reached the highest values. The highest micromechanical properties were measured for the self-adhesive RBC (Vertise Flow; E = 10.81 GPa, HV = 60.20 N/mm2). Reliability was highly influenced by filler weight (η2 = 0.77) and volume (η2 = 0.99) proportion.
CONCLUSION: In the present study, the self-adhesive RBC showed the highest reliability, highest DC (together with one of the low-shrinkage RBCs), and highest micromechanical properties as well as good macromechanical properties. Moreover, a curing time of 40 s and an incremental thickness not exceeding 2 mm appeared to be necessary for such results.

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Year:  2013        PMID: 23560255     DOI: 10.3290/j.jad.a29530

Source DB:  PubMed          Journal:  J Adhes Dent        ISSN: 1461-5185            Impact factor:   2.359


  7 in total

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Authors:  Sung-Ae Son; Jeong-Kil Park; Kyoung-Hwa Jung; Ching-Chang Ko; Chang-Mo Jeong; Yong Hoon Kwon
Journal:  Photomed Laser Surg       Date:  2014-12-30       Impact factor: 2.796

2.  The Effect of Flowable Composite Resins on Periodontal Health, Cytokine Levels, and Immunoglobulins.

Authors:  Cem Peskersoy; Aybeniz Oguzhan; Onder Gurlek
Journal:  Biomed Res Int       Date:  2022-04-23       Impact factor: 3.246

3.  Shear bond strength of a new self-adhering flowable composite resin for lithium disilicate-reinforced CAD/CAM ceramic material.

Authors:  Ugur Erdemir; Hande Sar Sancakli; Erkan Sancakli; Meltem Mert Eren; Sevda Ozel; Taner Yucel; Esra Yildiz
Journal:  J Adv Prosthodont       Date:  2014-12-17       Impact factor: 1.904

4.  Physical and photoelastic properties of bulk-fill and conventional composites.

Authors:  Renata Pereira; Maria Cecília Caldas Giorgi; Rodrigo Barros Esteves Lins; Jéssica Dias Theobaldo; Débora Alves Nunes Leite Lima; Giselle Maria Marchi; Flávio Henrique Baggio Aguiar
Journal:  Clin Cosmet Investig Dent       Date:  2018-12-12

5.  Comparison of self-adhering flowable composite microleakage with several types of bonding agent in class V cavity restoration.

Authors:  Atefeh Yousefi Jordehi; Maryam Shakur Shahabi; Alireza Akbari
Journal:  Dent Res J (Isfahan)       Date:  2019 Jul-Aug

6.  Methacrylate peak determination and selection recommendations using ATR-FTIR to investigate polymerisation of dental methacrylate mixtures.

Authors:  António H S Delgado; Anne M Young
Journal:  PLoS One       Date:  2021-06-09       Impact factor: 3.240

7.  Fissure sealant materials: Wear resistance of flowable composite resins.

Authors:  Sohrab Asefi; Solmaz Eskandarion; Shadi Hamidiaval
Journal:  J Dent Res Dent Clin Dent Prospects       Date:  2016-08-17
  7 in total

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