Skip to main content
Erschienen in: Clinical Oral Investigations 8/2016

09.01.2016 | Original Article

Comparison of flowable bulk-fill and flowable resin-based composites: an in vitro analysis

verfasst von: Frank Engelhardt, Sebastian Hahnel, Verena Preis, Martin Rosentritt

Erschienen in: Clinical Oral Investigations | Ausgabe 8/2016

Einloggen, um Zugang zu erhalten

Abstract

Objectives

Flowable bulk-fill resin bonded composites (RBCs) are supposed to show improved abrasion resistance and fracture toughness in comparison to flowable conventional RBCs.

Materials and methods

Specimens of eight flowable RBCs (5× flowable conventional, 3× flowable bulk-fill) were fabricated for testing relative fracture toughness (SENB), relative three-body wear, the Vickers hardness, glass transition Tg (differential scanning calorimetry; DSC) and filler mass fraction (thermal gravimetric analysis; TGA). A laboratory veneering composite was used as a reference. Fracture toughness and wear values were related to this reference. Scanning electron microscope images were evaluated for fraktographical and microstructural investigations. Statistical analyses were performed using one-way Anova, the Bonferroni post hoc test and the Pearson correlation test (α =0.05).

Results

Relative fracture toughness varied between 0.64 and 1.34 (1.00 = 1.69 MPam½) and relative wear rates between 1.24 and 0.55 (1.00 = 134 μm). The Vickers hardness ranged between 14.4 and 57.2 HV. TGA showed filler fractions between 55 and 77 wt.%. Tg values varied between −67.8 and −40.9 °C. None of the tests identified clear differences between flowable bulk-fills or conventional flowable RBCs. The Pearson correlation coefficient (cc) showed significant correlations (cc > 0.583; p < 0.001) between relative fracture toughness and hardness or filler content. There was a significant correlation (cc = 0.757; p = 0.005) between relative wear and glass transition temperature or between filler fraction and the Vickers hardness (cc > 0.702; p < 0.001). For all filler sizes breakdown was found, where clusters and pre-polymerized particles were partly disintegrated.

Conclusions

Flowable bulk-fill RBCs showed no improved abrasion resistance and fracture toughness in comparison to flowable conventional RBCs.

Clinical relevance

Differences in the properties were higher between the individual materials than between the material groups. Therefore the appropriate material selection may be essential for a clinical success.
Literatur
1.
Zurück zum Zitat Sunnegårdh-Grönberg K, van Dijken JWV, Funegårdh U, Lindberg A, Nilsson M (2009) Selection of dental materials and longevity of replaced restorations in public dental health clinics in northern Sweden. J Dent 37:673–678CrossRefPubMed Sunnegårdh-Grönberg K, van Dijken JWV, Funegårdh U, Lindberg A, Nilsson M (2009) Selection of dental materials and longevity of replaced restorations in public dental health clinics in northern Sweden. J Dent 37:673–678CrossRefPubMed
2.
Zurück zum Zitat Ilie N, Stark K (2014) Curing behaviour of high-viscosity bulk-fill composites. J Dent 42:977–985CrossRefPubMed Ilie N, Stark K (2014) Curing behaviour of high-viscosity bulk-fill composites. J Dent 42:977–985CrossRefPubMed
3.
Zurück zum Zitat Bucuta S, Ilie N (2014) Light transmittance and micro-mechanical properties of bulk fill vs. conventional resin based composites. Clin Oral Invest 18:1991–2000CrossRef Bucuta S, Ilie N (2014) Light transmittance and micro-mechanical properties of bulk fill vs. conventional resin based composites. Clin Oral Invest 18:1991–2000CrossRef
4.
Zurück zum Zitat Price RB, Dérand T, Sedarous M, Andreou P, Loney RW (2000) Effect of distance on the power density from two light guides. J Esthet Dent 12:320–327CrossRefPubMed Price RB, Dérand T, Sedarous M, Andreou P, Loney RW (2000) Effect of distance on the power density from two light guides. J Esthet Dent 12:320–327CrossRefPubMed
5.
Zurück zum Zitat Lohbauer U, Rahiotis C, Krämer N, Petschelt A, Eliades G (2005) The effect of different light-curing units on fatigue behavior and degree of conversion of a resin composite. Dent Mater 21:608–615CrossRefPubMed Lohbauer U, Rahiotis C, Krämer N, Petschelt A, Eliades G (2005) The effect of different light-curing units on fatigue behavior and degree of conversion of a resin composite. Dent Mater 21:608–615CrossRefPubMed
6.
Zurück zum Zitat Lohbauer U, Belli R, Ferracane JL (2013) Factors involved in mechanical fatigue degradation of dental resin composites. J Dent Res 92:584–591CrossRefPubMed Lohbauer U, Belli R, Ferracane JL (2013) Factors involved in mechanical fatigue degradation of dental resin composites. J Dent Res 92:584–591CrossRefPubMed
7.
Zurück zum Zitat Rencz A, Hickel R (2012) Curing efficiency of modern LED units. Clin Oral Invest 16:173–179CrossRef Rencz A, Hickel R (2012) Curing efficiency of modern LED units. Clin Oral Invest 16:173–179CrossRef
8.
Zurück zum Zitat Van Dijken J, Pallesen U (2014) A randomized controlled three year evaluation of “bulk-filled” posterior resin restorations based on stress decreasing resin technology. Dent Mater 30:245–251CrossRef Van Dijken J, Pallesen U (2014) A randomized controlled three year evaluation of “bulk-filled” posterior resin restorations based on stress decreasing resin technology. Dent Mater 30:245–251CrossRef
9.
Zurück zum Zitat Da Rosa R, Cenci MS, Donassollo TA, Lognerico AD, Demarco FF (2006) A clinical evaluation of posterior restorations: 17 year findings. J Dent 34:427–435CrossRef Da Rosa R, Cenci MS, Donassollo TA, Lognerico AD, Demarco FF (2006) A clinical evaluation of posterior restorations: 17 year findings. J Dent 34:427–435CrossRef
10.
Zurück zum Zitat Ferracane JL (2013) Resin-based composite performance: are there some things we can’t predict? Dent Mater 29:51–58CrossRefPubMed Ferracane JL (2013) Resin-based composite performance: are there some things we can’t predict? Dent Mater 29:51–58CrossRefPubMed
11.
Zurück zum Zitat Bayne SC (2012) Review: correlation of clinical performance with ‘in vitro tests’ of restorative dental materials that use polymer-based matrices. Dent Mater 28:52–71CrossRefPubMed Bayne SC (2012) Review: correlation of clinical performance with ‘in vitro tests’ of restorative dental materials that use polymer-based matrices. Dent Mater 28:52–71CrossRefPubMed
12.
Zurück zum Zitat Ferracane JL (2006) Hygroscopic and hydrolytic effects in dental polymer networks. Dent Mater 22:211–222CrossRefPubMed Ferracane JL (2006) Hygroscopic and hydrolytic effects in dental polymer networks. Dent Mater 22:211–222CrossRefPubMed
13.
Zurück zum Zitat Czasch P, Ilie N (2013) In vitro comparison of mechanical properties and degree of cure of bulk fill composites. Clin Oral Invest 17:227–235CrossRef Czasch P, Ilie N (2013) In vitro comparison of mechanical properties and degree of cure of bulk fill composites. Clin Oral Invest 17:227–235CrossRef
14.
Zurück zum Zitat Ilie N, Bucuta S, Draenert M (2013) Bulk-fill resin-based composites: an in vitro assessment of their mechanical performance. Oper Dent 38:618–625CrossRefPubMed Ilie N, Bucuta S, Draenert M (2013) Bulk-fill resin-based composites: an in vitro assessment of their mechanical performance. Oper Dent 38:618–625CrossRefPubMed
15.
Zurück zum Zitat Ilie N, Rencz A, Hickel R (2013) Investigations towards nano-hybrid resin-based composites. Clin Oral Invest 17:185–193CrossRef Ilie N, Rencz A, Hickel R (2013) Investigations towards nano-hybrid resin-based composites. Clin Oral Invest 17:185–193CrossRef
16.
Zurück zum Zitat Roulet JF, Price R (2014) Light curing—guidelines for practitioners—a consensus statement from the 2014 symposium on light curing in dentistry. Held at Dalhousie University, Halifax, Canada. J Adhes Dent 16:303–304PubMed Roulet JF, Price R (2014) Light curing—guidelines for practitioners—a consensus statement from the 2014 symposium on light curing in dentistry. Held at Dalhousie University, Halifax, Canada. J Adhes Dent 16:303–304PubMed
17.
Zurück zum Zitat De Gee A, Pallav P, Davidson C (1986) Effect of abrasion medium on wear of stress-bearing composites and amalgam in vitro. J Dent Res 65:654–658CrossRefPubMed De Gee A, Pallav P, Davidson C (1986) Effect of abrasion medium on wear of stress-bearing composites and amalgam in vitro. J Dent Res 65:654–658CrossRefPubMed
18.
Zurück zum Zitat De Gee A, Pallav P (1994) Occlusal wear simulation with the ACTA wear machine. J Dent 22:21–27CrossRef De Gee A, Pallav P (1994) Occlusal wear simulation with the ACTA wear machine. J Dent 22:21–27CrossRef
19.
Zurück zum Zitat ISO 6507: 2005–12 Metallic materials—Vickers hardness test. Beuth Verlag. Berlin 2005 ISO 6507: 2005–12 Metallic materials—Vickers hardness test. Beuth Verlag. Berlin 2005
20.
Zurück zum Zitat Manhart J, Kunzelmann K, Chen H, Hickel R (2000) Mechanical properties and wear behavior of light-cured packable composite resins. Dent Mater 16:33–40CrossRefPubMed Manhart J, Kunzelmann K, Chen H, Hickel R (2000) Mechanical properties and wear behavior of light-cured packable composite resins. Dent Mater 16:33–40CrossRefPubMed
21.
Zurück zum Zitat Mesquita RV, Axmann D, Geis-Gerstorfer J (2006) Dynamic visco-elastic properties of dental composite resins. Dent Mater 22:258–267CrossRefPubMed Mesquita RV, Axmann D, Geis-Gerstorfer J (2006) Dynamic visco-elastic properties of dental composite resins. Dent Mater 22:258–267CrossRefPubMed
22.
Zurück zum Zitat Belli R, Petschelt A, Lohbauer U (2014) Are linear elastic material properties relevant predictors of the cyclic fatigue resistance of dental resin composites? Dent Mater 30:381–391CrossRefPubMed Belli R, Petschelt A, Lohbauer U (2014) Are linear elastic material properties relevant predictors of the cyclic fatigue resistance of dental resin composites? Dent Mater 30:381–391CrossRefPubMed
23.
Zurück zum Zitat Cock DJ, Watts DC (1985) Time-dependent deformation of composite restorative materials in compression. J Dent Res 64:147–150CrossRefPubMed Cock DJ, Watts DC (1985) Time-dependent deformation of composite restorative materials in compression. J Dent Res 64:147–150CrossRefPubMed
24.
Zurück zum Zitat Sabbagh J, Vreven J, Leloup G (2002) Dynamic and static moduli of elasticity of resin-based materials. Dent Mater 18:64–71CrossRefPubMed Sabbagh J, Vreven J, Leloup G (2002) Dynamic and static moduli of elasticity of resin-based materials. Dent Mater 18:64–71CrossRefPubMed
25.
Zurück zum Zitat Alshali RZ, Silikas N, Satterthwaite JD (2013) Degree of conversion of bulk-fill compared to conventional resin-composites at two time intervals. Dent Mater 29:e213–e217CrossRefPubMed Alshali RZ, Silikas N, Satterthwaite JD (2013) Degree of conversion of bulk-fill compared to conventional resin-composites at two time intervals. Dent Mater 29:e213–e217CrossRefPubMed
26.
Zurück zum Zitat El-Damanhoury H, Platt J (2014) Polymerization shrinkage stress kinetics and related properties of bulk-fill resin composites. Oper Dent 39:374–382CrossRefPubMed El-Damanhoury H, Platt J (2014) Polymerization shrinkage stress kinetics and related properties of bulk-fill resin composites. Oper Dent 39:374–382CrossRefPubMed
27.
Zurück zum Zitat Flury S, Hayoz S, Peutzfeldt A, Hüsler J, Lussi A (2012) Depth of cure of resin composites: is the ISO 4049 method suitable for bulk fill materials? Dent Mater 28:521–528CrossRefPubMed Flury S, Hayoz S, Peutzfeldt A, Hüsler J, Lussi A (2012) Depth of cure of resin composites: is the ISO 4049 method suitable for bulk fill materials? Dent Mater 28:521–528CrossRefPubMed
28.
Zurück zum Zitat Flury S, Peutzfeldt A, Lussi A (2014) Influence of increment thickness on microhardness and dentin bond strength of bulk fill resin composites. Dent Mater 30:1104–1112CrossRefPubMed Flury S, Peutzfeldt A, Lussi A (2014) Influence of increment thickness on microhardness and dentin bond strength of bulk fill resin composites. Dent Mater 30:1104–1112CrossRefPubMed
29.
Zurück zum Zitat Leprince J, Palin WM, Vanacker J, Sabbagh J, Devaux J, Leloup G (2014) Physico-mechanical characteristics of commercially available bulk-fill composites. J Dent 42:993–1000CrossRefPubMed Leprince J, Palin WM, Vanacker J, Sabbagh J, Devaux J, Leloup G (2014) Physico-mechanical characteristics of commercially available bulk-fill composites. J Dent 42:993–1000CrossRefPubMed
30.
Zurück zum Zitat Dickens S, Stansbury J, Choi K, Floyd C (2003) Photopolymerization kinetics of methacrylate dental resins. Macromolecules 36:6043–6053CrossRef Dickens S, Stansbury J, Choi K, Floyd C (2003) Photopolymerization kinetics of methacrylate dental resins. Macromolecules 36:6043–6053CrossRef
31.
Zurück zum Zitat Sideridou I, Tserki V, Papanastasiou G (2002) Effect of chemical structure on degree of conversion in light-cured dimethacrylate-based dental resins. Biomaterials 23:1819–1829CrossRefPubMed Sideridou I, Tserki V, Papanastasiou G (2002) Effect of chemical structure on degree of conversion in light-cured dimethacrylate-based dental resins. Biomaterials 23:1819–1829CrossRefPubMed
32.
Zurück zum Zitat Morgan DS, Kalachandra Shobha H, Gunduz N, Stejskal E (2000) Analysis of a dimethacrylate copolymer (Bis-GMA and TEGDMA) network by DSC and C solution and solid-state NMR spectroscopy. Biomaterials 21:1897–1903CrossRefPubMed Morgan DS, Kalachandra Shobha H, Gunduz N, Stejskal E (2000) Analysis of a dimethacrylate copolymer (Bis-GMA and TEGDMA) network by DSC and C solution and solid-state NMR spectroscopy. Biomaterials 21:1897–1903CrossRefPubMed
33.
Zurück zum Zitat Barkmeier W, Takamizawa T, Erickson R, Tsujimoto A, Latta M, Miyazaki M (2015) Localized and generalized simulated wear of resin composites. Oper Dent 40–3:322–335CrossRef Barkmeier W, Takamizawa T, Erickson R, Tsujimoto A, Latta M, Miyazaki M (2015) Localized and generalized simulated wear of resin composites. Oper Dent 40–3:322–335CrossRef
34.
Zurück zum Zitat Zorzin J, Maier E, Harre S, Fey T, Belli R, Lohbauer U, Petschelt A, Taschner M (2015) Bulk-fill resin composites: polymerization properties and extended light curing. Dent Mater 31:293–301CrossRefPubMed Zorzin J, Maier E, Harre S, Fey T, Belli R, Lohbauer U, Petschelt A, Taschner M (2015) Bulk-fill resin composites: polymerization properties and extended light curing. Dent Mater 31:293–301CrossRefPubMed
35.
Zurück zum Zitat Bayne SC, Taylor D, Heymann H (1992) Protection hypothesis for composite wear. Dent Mater 8:305–309CrossRefPubMed Bayne SC, Taylor D, Heymann H (1992) Protection hypothesis for composite wear. Dent Mater 8:305–309CrossRefPubMed
36.
Zurück zum Zitat Finlay N, Hahnel S, Dowling AH, Fleming G (2013) The in vitro wear behavior of experimental resin-based composites derived from a commercial formulation. Dent Mater 29:365–374CrossRefPubMed Finlay N, Hahnel S, Dowling AH, Fleming G (2013) The in vitro wear behavior of experimental resin-based composites derived from a commercial formulation. Dent Mater 29:365–374CrossRefPubMed
37.
Zurück zum Zitat Beun S, Glorieux T, Devaux J, Vreven J, Leloup G (2007) Characterization of nanofilled compared to universal and microfilled composites. Dent Mater 23:51–59CrossRefPubMed Beun S, Glorieux T, Devaux J, Vreven J, Leloup G (2007) Characterization of nanofilled compared to universal and microfilled composites. Dent Mater 23:51–59CrossRefPubMed
38.
Zurück zum Zitat Beun S, Bailly C, Devaux J, Leloup G (2012) Physical, mechanical and rheological characterization of resin-based pit and fissure sealants compared to flowable resin composites. Dent Mater 28:349–359CrossRefPubMed Beun S, Bailly C, Devaux J, Leloup G (2012) Physical, mechanical and rheological characterization of resin-based pit and fissure sealants compared to flowable resin composites. Dent Mater 28:349–359CrossRefPubMed
39.
Zurück zum Zitat Leprince J, Palin WM, Mullier T, Devaux J, Vreven J, Leloup G (2010) Investigating filler morphology and mechanical properties of new low-shrinkage resin composite types. J Oral Rehabil 37:364–376CrossRefPubMed Leprince J, Palin WM, Mullier T, Devaux J, Vreven J, Leloup G (2010) Investigating filler morphology and mechanical properties of new low-shrinkage resin composite types. J Oral Rehabil 37:364–376CrossRefPubMed
40.
Zurück zum Zitat Rastelli AN, Jacomassi DP, Faloni AP, Queiroz TP, Rojas SS, Bernardi MI, Bagnato VS, Hernandes AC (2012) The filler content of the dental composite resins and their influence on different properties. Microsc Res Tech 75:758–765CrossRefPubMed Rastelli AN, Jacomassi DP, Faloni AP, Queiroz TP, Rojas SS, Bernardi MI, Bagnato VS, Hernandes AC (2012) The filler content of the dental composite resins and their influence on different properties. Microsc Res Tech 75:758–765CrossRefPubMed
41.
Zurück zum Zitat Bayne SC, Heymann HO, Swift EJ (1994) Update on dental composite restorations. J Am Dent Assoc 125:687–701CrossRefPubMed Bayne SC, Heymann HO, Swift EJ (1994) Update on dental composite restorations. J Am Dent Assoc 125:687–701CrossRefPubMed
42.
Zurück zum Zitat Hosseinalipour M, Javadpour J, Rezaie H, Dadras T, Hayati AN (2010) Investigation of mechanical properties of experimental Bis-GMA/TEGDMA dental composite resins containing various mass fractions of silica nanoparticles. J Prosthodont 19:112–117CrossRefPubMed Hosseinalipour M, Javadpour J, Rezaie H, Dadras T, Hayati AN (2010) Investigation of mechanical properties of experimental Bis-GMA/TEGDMA dental composite resins containing various mass fractions of silica nanoparticles. J Prosthodont 19:112–117CrossRefPubMed
43.
Zurück zum Zitat Kyo-Han K, Joo LO, Osamu O (2002) The effect of filler loading and morphology on the mechanical properties of contemporary composites. J Prosthet Dent 87:642–648CrossRef Kyo-Han K, Joo LO, Osamu O (2002) The effect of filler loading and morphology on the mechanical properties of contemporary composites. J Prosthet Dent 87:642–648CrossRef
44.
Zurück zum Zitat Ikejima I, Nomoto R, McCabe J (2003) Shear punch strength and flexural strength of model composites with varying filler volume fraction. Particle size and silanation. Dent Mater 19:206–211CrossRefPubMed Ikejima I, Nomoto R, McCabe J (2003) Shear punch strength and flexural strength of model composites with varying filler volume fraction. Particle size and silanation. Dent Mater 19:206–211CrossRefPubMed
45.
Zurück zum Zitat Suzuki S, Leinfelder KF, Kawai K, Tsuchitani Y (1995) Effect of particle variation on wear rates of posterior composites. Am J Dent 8:173–178PubMed Suzuki S, Leinfelder KF, Kawai K, Tsuchitani Y (1995) Effect of particle variation on wear rates of posterior composites. Am J Dent 8:173–178PubMed
46.
Zurück zum Zitat Topcu FT, Erdemir U, Sahinkesen G, Yildiz E, Uslan I, Acikel C (2010) Evaluation of microhardness, surface roughness, and wear behavior of different types of resin composites polymerized with two different light sources. J Biomed Mater Res 92:470–480 Topcu FT, Erdemir U, Sahinkesen G, Yildiz E, Uslan I, Acikel C (2010) Evaluation of microhardness, surface roughness, and wear behavior of different types of resin composites polymerized with two different light sources. J Biomed Mater Res 92:470–480
47.
Zurück zum Zitat Tomaszewska IM, Kearns JO, Ilie N, Fleming G (2015) Bulk fill restoratives: to cap or not to cap—that is the question? J Dent 43:309–316CrossRefPubMed Tomaszewska IM, Kearns JO, Ilie N, Fleming G (2015) Bulk fill restoratives: to cap or not to cap—that is the question? J Dent 43:309–316CrossRefPubMed
Metadaten
Titel
Comparison of flowable bulk-fill and flowable resin-based composites: an in vitro analysis
verfasst von
Frank Engelhardt
Sebastian Hahnel
Verena Preis
Martin Rosentritt
Publikationsdatum
09.01.2016
Verlag
Springer Berlin Heidelberg
Erschienen in
Clinical Oral Investigations / Ausgabe 8/2016
Print ISSN: 1432-6981
Elektronische ISSN: 1436-3771
DOI
https://doi.org/10.1007/s00784-015-1700-4

Weitere Artikel der Ausgabe 8/2016

Clinical Oral Investigations 8/2016 Zur Ausgabe

Parodontalbehandlung verbessert Prognose bei Katheterablation

19.04.2024 Vorhofflimmern Nachrichten

Werden Personen mit Vorhofflimmern in der Blanking-Periode nach einer Katheterablation gegen eine bestehende Parodontitis behandelt, verbessert dies die Erfolgsaussichten. Dafür sprechen die Resultate einer prospektiven Untersuchung.

Invasive Zahnbehandlung: Wann eine Antibiotikaprophylaxe vor infektiöser Endokarditis schützt

11.04.2024 Endokarditis Nachrichten

Bei welchen Personen eine Antibiotikaprophylaxe zur Prävention einer infektiösen Endokarditis nach invasiven zahnärztlichen Eingriffen sinnvoll ist, wird diskutiert. Neue Daten stehen im Einklang mit den europäischen Leitlinienempfehlungen.

Zell-Organisatoren unter Druck: Mechanismen des embryonalen Zahnwachstums aufgedeckt

08.04.2024 Zahnmedizin Nachrichten

Der Aufbau von Geweben und Organen während der Embryonalentwicklung wird von den Zellen bemerkenswert choreografiert. Für diesen Prozess braucht es spezielle sogenannte „Organisatoren“. In einer aktuellen Veröffentlichung im Fachjournal Nature Cell Biology berichten Forschende durch welchen Vorgang diese Organisatoren im Gewebe entstehen und wie sie dann die Bildung von Zähnen orchestrieren.

Die Oralprophylaxe & Kinderzahnheilkunde umbenannt

11.03.2024 Kinderzahnmedizin Nachrichten

Infolge der Umbenennung der Deutschen Gesellschaft für Kinderzahnheilkunde in Deutsche Gesellschaft für Kinderzahnmedizin (DGKiZ) wird deren Mitgliederzeitschrift Oralprophylaxe & Kinderzahnheilkunde in Oralprophylaxe & Kinderzahnmedizin umbenannt. Aus diesem Grunde trägt die erste Ausgabe in 2024 erstmalig den neuen Titel.

Newsletter

Bestellen Sie unseren kostenlosen Newsletter Update Zahnmedizin und bleiben Sie gut informiert – ganz bequem per eMail.