Impact of storage conditions on the fracture reliability and physical properties of a dental resin-based composite
Afnan Omar AL-ZAIN, Evandro PIVA, Alice Hammes PIMENTEL, Camila Gonçalves DUARTE, Lisia Lorea VALENTE, Cristina Pereira ISOLAN, Eliseu Aldrighi MÜNCHOW

TL;DR
This study shows how different storage conditions and durations affect the strength and properties of a dental resin composite material.
Contribution
The study provides new insights into how storage conditions influence the mechanical behavior of a nanofilled resin-based composite.
Findings
Dry storage increased degree of conversion after 72 hours and improved flexural strength and hardness.
Wet storage initially improved strength but led to a decline after 168 hours.
Weibull modulus remained unchanged across all storage conditions.
Abstract
This study investigated the impact of ‘storage condition’ and ‘period of storage’ on selected physico-mechanical properties and fracture reliability of a resin-based composite (RBC). Specimens, prepared from a nanofilled RBC (Filtek Z350 XT; 3M ESPE), underwent tests for degree of conversion (DC), flexural strength (σ), flexural modulus (E), and hardness. The specimens were initially grouped into dry storage at 37°C or wet storage in distilled water at 37°C. Subsequently, they were further divided into four subgroups based on the period of storage: 6, 24, 72, or 168 hours. Specimens tested immediately after preparation served as control. Data analysis employed two-way ANOVA and Weibull analysis (α = 5%). Compared to the control, an increase in DC was observed only after 72 hours of dry storage; σ showed higher values after both dry and wet storage, regardless of the storage period…
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Taxonomy
TopicsDental materials and restorations · Dental Research and COVID-19 · Dental Erosion and Treatment
