Department of Dental Prosthetics, Medical University of Lodz, Ul. Pomorska 251, 92-213 Lodz, Poland.
Department of Materials Research, Institute of Materials Science and Engineering, University of Technology, Ul. Stefanowskiego 1/15, 90-924 Lodz, Poland.
Biomed Res Int. 2019 Jul 1;2019:7485409. doi: 10.1155/2019/7485409. eCollection 2019.
To investigate, using the FEM, the influence of different notching angles on a zirconium dioxide coping with the aim of establishing the optimal connection conditions with veneering ceramic.
To calculate the stresses in the connection between zirconia coping and veneering ceramic, a model comprising grooves cut perpendicular was adopted. Such a notch profile was used to design the shape and spacing of the grooves on an FEM model simulating a zirconium dioxide coping. For discretization purposes we used twenty-node solid BRICK elements featuring intermediate nodes with three degrees of freedom in each node. The model was divided into 117 745 finished elements and 439 131 nodes. The problem was solved with a GLU type contact. The same load = divided by the number of nodes on the external surface was applied to each node of the outer surface of the base. In subsequent computing variants the load changed the orientation by angle from ° to ° every °.
The highest level of material strain occurs at angle α = 0° σ =309 MPa and the lowest at angle α = 45° σ =220 MPa. The highest positive stress pressure occurs at angle α = 0° p=251 MPa, p=-354 MPa and the lowest at angle α = 15°, p=171 MPa, p=-186 MPa. In the case of tangential stresses on the coping-veneering ceramic connection, the highest values were noted at angle α = 15° τ=44,4 MPa and the lowest at angle α = 45° τ=32,7 MPa.
To reduce the load on the zirconia-veneering ceramic connection, the notches should be made at an angle of α = 45°.
通过有限元法(FEM)研究不同缺口角度对二氧化锆牙冠以达到与饰面陶瓷建立最佳连接条件的影响。
为了计算二氧化锆牙冠与饰面陶瓷之间连接的应力,采用了垂直切割的凹槽模型。这种缺口形状用于设计 FEM 模型中二氧化锆牙冠的形状和凹槽间距。为了离散化目的,我们使用了具有三个自由度的二十节点实体 BRICK 元素。模型被分为 117745 个完成的元素和 439131 个节点。问题通过 GLU 类型的接触来解决。将相同的负载除以基底外表面上的节点数施加到基底外表面的每个节点上。在随后的计算变体中,负载通过每 1 度改变 的方向。
材料应变水平最高的角度为α=0°时,σ=309 MPa,最低的角度为α=45°时,σ=220 MPa。正压应力最高的角度为α=0°时,p=251 MPa,p=-354 MPa,最低的角度为α=15°时,p=171 MPa,p=-186 MPa。在牙冠-饰面陶瓷连接的切向应力方面,最高值记录在α=15°时,τ=44.4 MPa,最低值记录在α=45°时,τ=32.7 MPa。
为了减少氧化锆-饰面陶瓷连接的负载,缺口应制成α=45°角。