4.6 Article

Mechanical properties of fiber reinforced restorative composite with two distinguished fiber length distribution

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DOI: 10.1016/j.jmbbm.2016.01.036

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Discontinuous fiber reinforced composite; Fracture toughness; Fiber length

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  1. Stick Tech LTD - Member of GC Group

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Objectives: The purpose of this study was to investigate the reinforcing effect of discontinuous glass fiber fillers with different length scales on fracture toughness and flexural properties of dental composite. Materials and methods: Experimental fiber reinforced composite (Exp-FRC) was prepared by mixing 27 wt% of discontinuous E-glass fibers having two different length scales (micrometer and millimeter) with various weight ratios (1:1, 2:1, 1:0 respectively) to the 23 wt% of dimethacrylate based resin matrix and then 50 wt% of silane treated silica filler were added gradually using high speed mixing machine. As control, commercial FRC and conventional posterior composites were used (everX Posterior, Alert, and Filtek Superme). Fracture toughness, work of fracture, flexural strength, and flexural modulus were determined for each composite material following ISO standards. The specimens (n=6) were dry stored (37 degrees C for 2 days) before they were tested. Scanning electron microscopy was used to evaluate the microstructure of the experimental FRC composites. The results were statistically analyzed using ANOVA followed by post-hoc Tukey's test. Level of significance was set at 0.05. Results: ANOVA revealed that experimental composites reinforced with different fiber length scales (hybrid Exp-FRC) had statistically significantly higher mechanical performance of fracture toughness (4.7 MPa m(1/2)) and flexural strength (155 MPa) (p < 0.05) compared to other tested composites. Conclusions: The use of different length scales of discontinues fiber fillers (hybrid) with polymer matrix yielded improved mechanical performance compared to commercial FRC and conventional posterior composites. (C) 2016 Elsevier Ltd. All rights reserved.

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