Ustun O, Ozturk A N
Department of Prosthodontics, Faculty of Dentistry, Akdeniz University, Antalya, Turkey.
Private Practice, Funda Konutlari, Bebe Hakan, Selçuklu, Konya, Turkey.
Niger J Clin Pract. 2018 Mar;21(3):337-342. doi: 10.4103/njcp.njcp_45_17.
Fractures in porcelain laminate veneers (PLVs) are a significant clinical problem. Preparation designs can affect stress distribution, which leads to fractures in PLVs. Therefore, identification of the most favorable preparation design in terms of stress distribution is required.
The purpose of this study is to examine the functional stress patterns of PLVs with featheredge, incisal bevel, and overlapped preparation designs under 0°, 60°, and 120° functional loads using finite element analysis.
Porcelain veneers with three different preparation designs (incisal overlap, incisal bevel, and featheredge) were modeled. A cement layer of 100 μm of luting composite resin was assumed, and a thickness of 0.5 mm of porcelain veneers was used. All models were loaded at 0°, 60°, and 120° to the long axis of the tooth to determine the stresses that may occur during mastication under different load angulations. A total force of 200 N was applied from the incisal edge of the models.
Maximum stresses were recorded in the incisal overlapped design (53.3 MPa) under 120° of functional load. Minimum stresses were recorded in the incisal bevel preparation design (22.37 MPa) under 0° of functional load.
Both the preparation design and load angle affected the stress distribution on the PLVs. The incisal bevel preparation design provided a more appropriate geometry for stress distribution compared with the other techniques. Lateral forces produced more stress on the tooth and laminate material than vertical forces.
瓷贴面(PLV)骨折是一个重大的临床问题。预备设计会影响应力分布,进而导致瓷贴面骨折。因此,需要确定在应力分布方面最有利的预备设计。
本研究的目的是使用有限元分析,研究在0°、60°和120°功能载荷下,具有羽状边缘、切端斜面和重叠预备设计的瓷贴面的功能应力模式。
对具有三种不同预备设计(切端重叠、切端斜面和羽状边缘)的瓷贴面进行建模。假定粘结复合树脂粘结层厚度为100μm,瓷贴面厚度为0.5mm。所有模型均在与牙齿长轴成0°、60°和120°的角度加载,以确定在不同加载角度咀嚼过程中可能产生的应力。从模型的切端边缘施加200N的总力。
在120°功能载荷下,切端重叠设计的最大应力为53.3MPa。在0°功能载荷下,切端斜面预备设计的最小应力为22.37MPa。
预备设计和加载角度均影响瓷贴面的应力分布。与其他技术相比,切端斜面预备设计为应力分布提供了更合适的几何形状。横向力比垂直力在牙齿和贴面材料上产生更大的应力。