Division of General Dentistry, Nagasaki University Hospital, Nagasaki, Japan.
Odontology. 2012 Jul;100(2):192-8. doi: 10.1007/s10266-011-0039-9. Epub 2011 Sep 20.
Sufficient flexural strength is required for long-term clinical use of fixed partial dentures made with fiber-reinforced composite. The flexural strengths of indirect composite materials reinforced with a monomer-preimpregnated glass fiber material were determined to evaluate the compatibility of the composites to glass fiber material. Four types (microhybrid, nanohybrid, microfilled, and minifilled) of indirect composites and a unidirectional long glass fiber material were selected for investigation. The composites were placed on a fiber plate and polymerized in accordance with the respective manufacturer's instructions. Rectangular bar fiber-composite specimens were machined and the flexural strength was calculated. The flexural strength of each indirect composite was also measured. The microfilled composite with the lowest filler content (70 wt%) exhibited the highest increase ratio using the fiber, although its strength without fiber reinforcement was the lowest (62.1 MPa). The fiber-microhybrid specimen demonstrated the highest mean strength (355.9 MPa), although the filler content of the microhybrid composite was comparatively low (73 wt%). The type of composite material should be considered for the selection of an optimal fiber-composite combination.
为了使纤维增强复合材料制作的固定局部义齿能够长期临床使用,需要有足够的弯曲强度。本研究通过测定单体预浸渍玻璃纤维增强型间接复合树脂材料的弯曲强度,来评估复合材料与玻璃纤维材料的相容性。选择了 4 种间接复合树脂材料(微混合、纳米混合、微填充和迷你填充)和一种单向长玻璃纤维材料进行研究。将复合材料置于纤维板上,并按照各自制造商的说明进行聚合。加工成矩形棒纤维复合材料试件,并计算弯曲强度。同时还测量了每种间接复合树脂的弯曲强度。尽管不含纤维增强时强度最低(62.1 MPa),但具有最低填料含量(70wt%)的微填充复合材料的纤维增强后,增加率最高。尽管微混合复合材料的填料含量相对较低(73wt%),但纤维微混合试件的平均强度最高(355.9 MPa)。在选择最佳纤维复合材料组合时,应考虑复合材料的类型。