偷看
材料科学
万能试验机
植入
桥台
牙科
扫描电子显微镜
牙种植体
复合材料
疲劳试验
牙基
口腔正畸科
结构工程
医学
外科
工程类
极限抗拉强度
聚合物
作者
Jefferson David Melo de Matos,Guilherme da Rocha Scalzer Lopes,Daher Antonio Queiroz,A. L. J. Pereira,Mário Alexandre Coelho Sinhoreti,Nathália de Carvalho Ramos,Vinicius Lino,Flávio Rosa de Oliveira,Alexandre Luiz Souto Borges,Marco Antônıo Bottıno
出处
期刊:Materials
[Multidisciplinary Digital Publishing Institute]
日期:2022-11-16
卷期号:15 (22): 8133-8133
被引量:5
摘要
The present study aimed to evaluate the biomechanical behavior of PEEK abutments with different heights on single titanium implants. To investigate the implant surface, different tests (scanning electron microscopy, energy-dispersive X-ray, and X-ray diffraction) were adopted. Herein, 20 implants received the 4.5 × 4.0 mm PEEK short abutment (SA) and 20 received the 4.5 × 5.5 mm PEEK long abutment (LA). The abutments were installed using dual-cure resin cement. To determine the fatigue test, two specimens from each group were submitted to the single load fracture test. For this, the samples were submitted to a compressive load of (0.5 mm/min; 30°) in a universal testing machine. For the fatigue test, the samples received 2,000,000 cycles (2 Hz; 30°). The number of cycles and the load test was analyzed by the reliability software SPSS statistics using Kaplan-Meier and Mantel-Cox tests (log-rank) (p < 0.05). The maximum load showed no statistically significant differences (p = 0.189) for the SA group (64.1 kgf) and the LA group (56.5 kgf). The study groups were statistically different regarding the number of cycles (p = 0.022) and fracture strength (p = 0.001). PEEK abutments can be indicated with caution for implant-supported rehabilitation and may be suitable as temporary rehabilitation.
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