Pegoretti A, Fambri L, Zappini G, Bianchetti M
Department of Materials Engineering, University of Trento, Mesiano, Italy.
Biomaterials. 2002 Jul;23(13):2667-82. doi: 10.1016/s0142-9612(01)00407-0.
In this work the mechanical response to external applied loads of a new glass fibre reinforced endodontic post is simulated by finite element (FE) analysis of a bidimensional model. The new post has a cylindrical shape with a smooth conical end in order to adequately fit the root cavity, and to avoid edges that could act as undesired stress concentrators. Mechanical data obtained by three-point bending tests on some prototypes fabricated in the laboratory are presented and used in the FE model. Under various loading conditions, the resulting stress component fields are hence compared with those obtained in the case of two commercial endodontic posts (i.e. a cast metal post and a carbon fibre post) and with the response of a natural tooth. The gold cast post-and-core produces the greatest stress concentration at the post-dentin interface. On the other hand, fibre-reinforced composite posts do present quite high stresses in the cervical region due to their flexibility and also to the presence of a less stiff core material. The glass fibre composite shows the lowest peak stresses inside the root because its stiffness is much similar to dentin. Except for the force concentration at the cervical margin, the glass fibre composite post induces a stress field quite similar to that of the natural tooth.
在这项工作中,通过对二维模型进行有限元(FE)分析,模拟了一种新型玻璃纤维增强牙髓桩对外部施加负载的力学响应。这种新型桩呈圆柱形,末端为光滑的圆锥形,以便能充分适配根管,避免出现可能成为不良应力集中源的边缘。文中给出了在实验室制作的一些原型上进行三点弯曲试验所获得的力学数据,并将其用于有限元模型。在各种加载条件下,将所得的应力分量场与两种市售牙髓桩(即铸造金属桩和碳纤维桩)情况下获得的应力分量场以及天然牙的响应进行了比较。铸造金桩核在桩 - 牙本质界面处产生最大的应力集中。另一方面,纤维增强复合桩由于其柔韧性以及存在刚度较小的核心材料,在颈部区域确实会出现相当高的应力。玻璃纤维复合材料在根管内显示出最低的峰值应力,因为其刚度与牙本质非常相似。除了颈部边缘的力集中外,玻璃纤维复合桩产生的应力场与天然牙的应力场非常相似。