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首页> 外文期刊>Computer methods in biomechanics and biomedical engineering >Carbon fiber-reinforced PEEK in implant dentistry: A scoping review on the finite element method
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Carbon fiber-reinforced PEEK in implant dentistry: A scoping review on the finite element method

机译:植入物牙科的碳纤维增强偷看:有限元方法的范围综述

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Objective: The aim of the present study was to perform an integrative systematic review on the stress distribution assessed by finite element analysis on dental implants or abutments composed of carbon fiber-reinforced PEEK composites.Method: An electronic search was performed on PUBMED and ScienceDirect using a combination of the following search terms: PEEK, Polyetheretherketone, FEA, FEM, Finite element, Stress, Dental implant and Dental abutment.Results: The findings reported mechanical properties and the stress distribution through implant and abutment composed of PEEK and its fiber-reinforced composites. Unfilled PEEK revealed low values of elastic modulus and strength that negatively affected the stress distribution through the abutment and implant towards to the bone tisues. The incorporation of 30% carbon fibers increased the elastic modulus and strength of the PEEK-matrix composites although some studies reported no statistic differences in stress magnitude when compared to unfilled PEEK. However, an increase in short carbon fibers up to 60% revealed an enhancement on the stress distribution through abutment and implants towards to the bone tissues. PEEK veneering onto titanium core structures can also be a strategy to control the stress distribution at the implant-to-bone interface.Conclusions: The stiffness and strength of PEEK-matrix composites can be increased by the improvement of the carbon fibers' network. Thus, the content, shape, dimensions, and chemical composition of fibers are key factors to improve the stress distribution through abutment and implants composed of PEEK-matrix composites.
机译:目的:本研究的目的是对由牙植入物或由碳纤维增强PEEK复合材料组成的牙科植入物或支座进行有限元分析评估的应力分布的综合系统综述。方法:使用电子搜索和使用以下搜索条件的组合:PEEK,聚醚醚酮,FEA,FEA,有限元,应力,牙科植入物和牙科邻接。结果:调查结果报告了通过植入物和偏心组成的机械性能和应力分布和其纤维增强复合材料。未填充的PEEK显示出低值的弹性模量和强度,这些强度通过邻接和植入朝向骨质跟踪来对抗压力分布。掺入30%的碳纤维增加了PEEK - 基质复合材料的弹性模量和强度,尽管有些研究报告与未填充的偷看相比,应力幅度没有统计学差异。然而,高达60%的短碳纤维的增加显示通过邻接和植入到骨组织的应力分布增强。 Peek嵌合件到钛核心结构上也可以是控制植入物到骨界面处的应力分布的策略。结论:通过改善碳纤维网络可以增加PEEK-矩阵复合材料的刚度和强度。因此,纤维的含量,形状,尺寸和化学组成是通过邻接和植入物构成的邻接基质复合材料来改善应力分布的关键因素。

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