人工扩张管中具有不同运动学特性的两种后加工滑行路径锉的挠曲行为和热分析

Nasr Hashem, N. Abdelsalam
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摘要

简介旋转滑道锉可以节省手动滑道锉所需的时间和精力,还可以最大限度地减少预备锉所受的压力。在预备开始时,特别是在严重弯曲的牙槽中,它们在穿过狭窄和弯曲的牙槽时应表现出抗折断性。目的:评估不同运动学的后加工热处理锉在人工稀释根管中的抗弯曲疲劳性,并将其奥氏体温度与断裂所需时间的结果联系起来。材料和方法:在不锈钢块上加工了一个人工根管,模拟膨大根管,其曲率角为 90°,曲率半径为 2 毫米,根管长度为 18 毫米,根管顶端尺寸为 ISO 18(直径为 0.18 毫米),曲率中心距顶端 4 毫米,呈冠状锥形:尽管 Easy Path 的奥氏体完成温度高于 R-Motion Glider,但 R-Motion Glider 的断裂所需时间明显长于 Easy Path(90s),这表明 R-Motion Glider 的抗循环疲劳破坏能力(237s)高于 Easy Path(90s)。结论:无论奥氏体精加工温度如何,往复式滑行路径锉刀的抗弯曲疲劳性能都优于旋转式滑行路径锉刀。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flexural behavior and thermal analysis of two post-machined glide path files with different kinematics in artificial dilacerated canal
Introduction: Rotary glide path files save time and effort exerted with manual glide path files, they also minimize the stress created upon the preparation files. They should exhibit resistance to fracture as they negotiate tight and curved canals at the beginning of the preparation especially in severly curved canals. Aim: To evaluate the flexural fatigue resistance of post-machined heat-treated files with different kinematics in artificial dilacerated canals and to correlate their austenite temperature with the results of the time taken to fracture. Materials and methods: An artificial root canal was machined in a stainless steel block simulating a dilacerated canal with a 90° angle of curvature and 2-mm radius of curvature, length of the canal was 18 mm and the apical size of the canal was ISO 18 (diameter of 0.18 mm) with center of curvature is 4 mm from the apex and tapered coronally Results: The flexural fatigue behavior of R-Motion glider showed higher resistance to cyclic fatigue failure (237s) than Easy Path (90s) expressed by the significantly longer time needed to fracture the R-Motion although the austen-ite finish temperature of Easy Path was higher than R-Motion Glider. Conclusions: Reciprocating glide path files had superior flexural fatigue resistance than the rotating glide path regardless of the austenite finish temperature.
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