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首页> 外文期刊>Journal of Applied Oral Science >Stress analysis of a fixed implant-supported denture by the finite element method (FEM) when varying the number of teeth used as abutments
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Stress analysis of a fixed implant-supported denture by the finite element method (FEM) when varying the number of teeth used as abutments

机译:当改变用作基台的牙齿数量时,通过有限元方法(FEM)对固定的种植体支撑义齿进行应力分析

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OBJECTIVES: In some clinical situations, dentists come across partially edentulous patients, and it might be necessary to connect teeth to implants. The aim of this study was to evaluate a metal-ceramic fixed tooth/implant-supported denture with a straight segment, located in the posterior region of the maxilla, when varying the number of teeth used as abutments. MATERIAL AND METHODS: A three-element fixed denture composed of one tooth and one implant (Model 1), and a four-element fixed denture composed of two teeth and one implant (Model 2) were modeled. A 100 N load was applied, distributed uniformly on the entire set, simulating functional mastication, for further analysis of the SEQV (Von Mises) principal stresses, which were compared with the flow limit of the materials. RESULTS: In a quantitative analysis, it may be observed that in the denture with one tooth, the maximum SEQV stress was 47.84 MPa, whereas for the denture with two teeth the maximum SEQV stress was 35.82 MPa, both located in the region between the pontic and the tooth. CONCLUSION: Lower stresses were observed in the denture with an additional tooth. Based on the flow limit of the materials, porcelain showed values below the limit of functional mastication.
机译:目的:在某些临床情况下,牙医会碰到部分缺牙的患者,因此可能有必要将牙齿连接到种植体上。这项研究的目的是评估当改变用作基牙的牙齿数量时,金属陶瓷固定牙齿/种植体支持的假牙的直段位于上颌的后部。材料与方法:建模由一个牙齿和一个植入物组成的三元素固定义齿(模型1)和由两个牙齿和一个植入物组成的四元素固定义齿(模型2)。施加100 N的载荷,均匀地分布在整个组件上,模拟功能性咀嚼,以进一步分析SEQV(冯·米塞斯)主应力,并将其与材料的流动极限进行比较。结果:在定量分析中,可以观察到在一颗牙齿的义齿中,最大SEQV应力为47.84 MPa,而在具有两个牙齿的义齿中,最大SEQV应力为35.82 MPa,均位于牙桥之间。和牙齿。结论:在假牙中增加了一颗牙齿的应力较低。基于材料的流动极限,瓷器显示出低于功能性咀嚼极限的值。

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