Nakamura Takashi, Waki Tomonori, Kinuta Souichiro, Tanaka Hideaki
Division of Oromaxillofacial Regeneration, Course for Integrated Oral Sciences and Stomatology, Osaka University Graduate School of Dentistry, Suita, Japan.
Int J Prosthodont. 2003 Sep-Oct;16(5):549-53.
The purpose of this study was to examine the flexural strength and elastic modulus of a new fiber-reinforced composite used for the fabrication of inlay-retained fixed partial dentures (FPD).
A total of six materials were used: Vectris, FibreKor, and an experimental material, BR-100, were the types of glass fiber preimpregnated with resin used for making the frameworks; Targis, Sculpture, and Estenia were used as the veneering composites. Five specimens of each material were prepared. Flexural strength and elastic modulus were determined using the three-point bending test. In addition, laminate specimens were fabricated by combination of the veneering composite and framework materials (Targis/Vectris, Sculpture/FibreKor, and Estenia/BR-100), and fracture loads of these specimens were determined. Laminate specimens were fabricated with three different framework thicknesses for Estenia/BR-100.
Estenia had the greatest strength and highest modulus of elasticity of the veneering composites. All three framework materials had flexural strength values (567 to 686 MPa) more than three times as great as those of the veneering composites (132 to 193 MPa). Of the laminate specimens, the Estenia/BR-100 with a framework thickness of 1.0 mm had a fracture load more than 50% greater than Targis/Vectris and Sculpture/FibreKor.
The combination of the experimental framework material BR-100 and the composite Estenia showed higher fracture loads than the other combinations tested.
本研究旨在检测一种用于制作嵌体固位固定局部义齿(FPD)的新型纤维增强复合材料的弯曲强度和弹性模量。
共使用六种材料:Vectris、FibreKor以及一种实验材料BR - 100,它们是用于制作支架的预浸树脂玻璃纤维类型;Targis、Sculpture和Estenia用作饰面复合材料。每种材料制备五个样本。采用三点弯曲试验测定弯曲强度和弹性模量。此外,通过将饰面复合材料与支架材料(Targis/Vectris、Sculpture/FibreKor和Estenia/BR - 100)组合制作层压样本,并测定这些样本的断裂载荷。针对Estenia/BR - 100制作了三种不同支架厚度的层压样本。
Estenia在饰面复合材料中具有最大强度和最高弹性模量。所有三种支架材料的弯曲强度值(567至686兆帕)是饰面复合材料(132至193兆帕)的三倍多。在层压样本中,支架厚度为1.0毫米的Estenia/BR - 100的断裂载荷比Targis/Vectris和Sculpture/FibreKor高50%以上。
实验性支架材料BR - 100与复合材料Estenia的组合显示出比其他测试组合更高的断裂载荷。