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Rapid 3 s Curing: What Happens in Deep Layers of New Bulk-Fill Composites?

机译:快速3秒固化:新的批量填充复合材料的深层会发生什么?

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摘要

This study assessed the influence of rapid 3 s light curing on the new generation of bulk-fill resin composites under the simulated aging challenge and depths up to 4 mm. Four bulk-fill materials were tested: two materials designed for rapid curing (Tetric PowerFill—PFILL; Tetric PowerFlow—PFLW) and two regular materials (Filtek One Bulk Fill Restorative—FIL; SDR Plus Bulk Fill Flowable—SDR). Three-point bending (n = 10) was used to measure flexural strength (FS) and flexural modulus (FM). In the 3 s group, two 2 mm thick specimens were stacked to obtain 4 mm thickness, while 2 mm-thick specimens were used for ISO group. Specimens were aged for 1, 30, or 30 + 3 days in ethanol. The degree of conversion (DC) up to 4 mm was measured by Raman spectroscopy. There was no difference between curing protocols in FS after 1 day for all materials except PFLW. FM was higher for all materials for ISO curing protocol. Mechanical properties deteriorated by increasing depth (2–4 mm) and aging. ISO curing induced higher DC for PFLW and FIL, while 3 s curing was sufficient for PFILL and SDR. The 3 s curing negatively affected FM of all tested materials, whereas its influence on FS and DC was highly material-specific.
机译:该研究评估了在模拟老化攻击下,快速3 S光固化对新一代散装树脂复合材料的影响,深度至4毫米。测试了四种散装材料:两种设计用于快速固化(Tetric PowerFill-PFill; Tetric Powerflow-PFLW)和两种普通材料(Filtek一个散装填充RESTORATIVE-FIL; SDR Plus Bulk Flowfult-SDR)。三点弯曲(n = 10)用于测量弯曲强度(FS)和弯曲模量(FM)。在3 S组中,堆叠两种2毫米厚的样品以获得4mm厚度,而2mm厚的样品用于ISO组。标本在乙醇中老化1,30或30 + 3天。通过拉曼光谱法测量高达4mm的转化率(DC)。除PFLW之外的所有材料后,FS的固化方案之间没有差异。对于ISO固化方案的所有材料,FM更高。机械性能通过增加深度(2-4mm)和老化而劣化。 ISO固化诱导PFLW和FIL更高的DC,而3 S固化足以用于PFILL和SDR。 3次固化对所有测试材料的FM产生负面影响,而其对FS和DC的影响是高度重要的。

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