Mokhtarikhoee Sepideh, Jannesari Alireza, Behroozi Hamid, Mokhtarikhoee Saeedeh
Dr. Shariati Hospital, Tehran University of Medical Sciences, Iran.
Annu Int Conf IEEE Eng Med Biol Soc. 2008;2008:1829-32. doi: 10.1109/IEMBS.2008.4649535.
Connectors in fixed partial dentures (FPDs) are the weakest areas and responsible for failure in most cases. Optimizing the design of connectors will lead to higher strength and better performance of all-ceramic FPDs.
The aim of this study was to use the finite element method in order to simulate the effect of connector width on stress distribution in all-ceramic FPDs.
Three 3-dimensional finite element models for a 3-unit FPD made of IPS-Empress 2 representing a lower first molar were created and a static load of 500 N was applied axially at mid pontic area. By choosing three different widths, 3 mm, 4 mm, 5 mm for connectors, three models I,II, and III for complete assembly of teeth and connectors were created.
Maximum stress occurred in the connector area in all models. Compared to model I, stress decreased 24% in model III; so the wider connector lead to lower stress values.
Connectors are the most regular area for the fracture in all-ceramic FPDs because of high concentration of stress. Decreasing the width of connector raises the stress and increases the risk for fracture. Also, maximum stress in bridges is less than half of the strength of IPS-Empress2 and no failure is expected for all cases.
This in vitro study of 3-unit all ceramicFPDs made with IPS-Empress2 shows that an increase in the width of connector reduces the stress concentration and improves the likelihood of long-term prognosis. Also, IPS-Empress2 can be used in posterior regions in many cases.
固定局部义齿(FPD)中的连接体是最薄弱的部位,在大多数情况下是导致义齿失败的原因。优化连接体的设计将提高全瓷FPD的强度和性能。
本研究的目的是使用有限元方法来模拟连接体宽度对全瓷FPD应力分布的影响。
创建了三个由IPS-Empress 2制成的代表下颌第一磨牙的3单位FPD的三维有限元模型,并在桥体中央区域轴向施加500 N的静载。通过为连接体选择三种不同的宽度,即3 mm、4 mm、5 mm,创建了三个用于牙齿和连接体完整组装的模型I、II和III。
所有模型中最大应力均出现在连接体区域。与模型I相比,模型III中的应力降低了24%;因此,连接体越宽,应力值越低。
由于应力高度集中,连接体是全瓷FPD中最常发生骨折的区域。减小连接体宽度会增加应力并增加骨折风险。此外,桥体中的最大应力小于IPS-Empress2强度的一半,预计所有情况均不会出现失败。
这项对用IPS-Empress2制作的3单位全瓷FPD的体外研究表明,连接体宽度的增加会降低应力集中并提高长期预后的可能性。此外,在许多情况下,IPS-Empress2可用于后牙区域。