首页> 外文会议>Functional and structural materials >The influence of cyclic straining in torsion on fatigue resistance and torsional properties of ProTaper NiTi endodontic instruments
【24h】

The influence of cyclic straining in torsion on fatigue resistance and torsional properties of ProTaper NiTi endodontic instruments

机译:扭转中的周期性应变对ProTaper NiTi牙髓器械耐疲劳性和扭转性能的影响

获取原文
获取原文并翻译 | 示例

摘要

This study evaluated the influence of cyclic straining in torsion on fatigue resistance and torsional properties of ProTaper (S1, S2, F1, F2, F3) NiTi instruments. The mechanical behavior was evaluated by means of torsion and bending tests, performed according to ISO 3630-1 specification, while the fatigue resistance was evaluated using a bench test device employing an artificial canal with 5mm curvature radius and angle of curvature of 45°. The dimensional aspects, diameter (D_3) and cross-sectional area (A_3) at 3mm from the tip of the instruments were determined by means of image analysis of optical and scanning electron microscopy (SEM). The surface characteristics of instruments before and after they were submitted to cyclic straining in torsion and the morphological aspects of the fractured surfaces were analyzed by SEM. The maximum torque and the bending moment at 45° were higher for instruments with larger D_3 and A_3. The Fl and F2 instruments followed the Coffin-Manson's relation, i.e., their number of cycles to failure (NCF) varied inversely with the strain amplitude. With the exception of SI and S2 instruments, there was a tendency of decreasing the maximum torque after the instruments have been submitted to cyclic straining in torsion. With the exception of SI instruments, there was a tendency of decreasing the NCF after torsional cycling. The analyses by SEM showed the presence of longitudinal cracks on the instruments previously cycled in torsion. The morphological aspects of the fractured surfaces of instruments tested in torsion or flexural fatigue did not changed by the cyclic straining in torsion. These changes in mechanical properties with torsional cycling can be related to the generation of imperfections such as longitudinal cracks on the instruments.
机译:这项研究评估了扭转中的周期性应变对ProTaper(S1,S2,F1,F2,F3)NiTi仪器的抗疲劳性和扭转性能的影响。机械性能通过根据ISO 3630-1规范执行的扭转和弯曲测试进行评估,而疲劳强度则使用台式测试设备进行评估,该设备采用人造管,其曲率半径为5mm,曲率角为45°。通过光学和扫描电子显微镜(SEM)的图像分析,确定距仪器尖端3毫米处的尺寸,直径(D_3)和横截面积(A_3)。仪器经受扭转循环应变前后的表面特性,并通过SEM分析了断裂表面的形态。对于D_3和A_3较大的仪器,最大扭矩和45°弯矩较高。 F1和F2仪器遵循科芬-曼森(Coffin-Manson)的关系,即,它们的失效循环数(NCF)与应变幅度成反比。除了S1和S2仪器外,在承受周期性扭转扭矩后,有降低最大扭矩的趋势。除SI仪器外,扭转循环后NCF趋于降低。 SEM分析表明,先前扭过扭动的器械存在纵向裂纹。在扭转或弯曲疲劳下测试的器械断裂表面的形态方面并未因扭转的周期性应变而改变。扭转循环引起的机械性能的这些变化可能与缺陷的产生有关,例如器械上的纵向裂纹。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号