Addison O, Marquis P M, Fleming G J P
Biomaterials Unit, School of Dentistry, University of Birmingham, St. Chad's Queensway, Birmingham B4 6NN, UK.
J Dent Res. 2007 Jun;86(6):519-23. doi: 10.1177/154405910708600606.
Resin luting of all-ceramic restorations results in increased performance; however, the strengthening mechanism and the role of the mechanical properties of the resin are not fully understood. The hypothesis tested is that ceramic strength enhancement is dependent on the elastic modulus of the resin. Three-point flexural moduli of a flowable, luting, and hybrid composite resin were characterized. Two hundred forty porcelain discs were air-abraded. One group acted as a control, and 3 additional groups were coated with 120 +/- 20 microm of each resin prior to bi-axial flexure testing. All resins significantly increased in mean strength, and the associated strength increase was related to the elastic modulus of the resin (R(2) = 0.9885), so the hypothesis was accepted. The combination of Poisson constraint and the creation of a resin-inter-penetrating layer sensitive to the elastic modulus of the resin may provide an explanation of the strengthening mechanism.
全瓷修复体的树脂粘结可提高其性能;然而,树脂增强机制以及树脂机械性能的作用尚未完全明确。本研究检验的假设是,陶瓷强度的提高取决于树脂的弹性模量。对一种可流动树脂粘结剂和一种混合复合树脂的三点弯曲模量进行了表征。240个瓷盘经空气喷砂处理。一组作为对照,另外三组在双轴弯曲试验前分别涂覆120±20微米的每种树脂。所有树脂的平均强度均显著提高,且强度的增加与树脂的弹性模量相关(R² = 0.9885),因此该假设被接受。泊松约束与对树脂弹性模量敏感的树脂互穿层的形成相结合,可能为增强机制提供一种解释。