不锈钢手工锉的抗循环疲劳断裂性能及其与表面粗糙度的关系。

Javier L Niño-Barrera, José A Sánchez-Alemán, Luis Gamboa-Martinez, Carlos Cortes-Rodriguez
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摘要

本研究的目的是评估5种不锈钢根管锉的粗糙度与其抗循环疲劳断裂之间的可能联系。研究包括五种不同品牌的不锈钢根管锉:SybroEndo Triple-Flex锉(美国Kerr, Glendora,美国),Ready steel K-Flexofile锉(Dentsply Sirona,瑞士Ballaigues), Mani Flexile锉(日本Mani, Tochigi- Ken), FKG k -锉(FKG,瑞士La Chaux-de-Fonds)和Zipperer Flexicut锉(VDW,德国慕尼黑)。每个品牌12个文件(共60个文件)被评估。用聚焦变焦显微镜对一个区域内的锉表面粗糙度(Sa)进行量化。然后对锉进行循环疲劳试验,确定疲劳断裂的循环次数和断裂碎片的长度。最后,用扫描电镜进行断口分析。根据Sa参数,电抛光的Ready Steel K-Flexofile®锉具有最高的粗糙度,但由于循环疲劳,它们也具有最高的抗断裂能力和最长的断裂碎片。断裂碎片长度与粗糙度呈正相关。断口表面表现为韧性断裂,有裂纹和塑性变形。电解抛光的Ready steel K-Flexofile®不锈钢锉即使具有最高的表面粗糙度,也具有最强的抗循环疲劳断裂能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Resistance to fracture due to cyclic fatigue of stainless steel manual files and its association to surface roughness.

The aim of this study was to evaluate the possible association between the roughness of 5 brands of stainless steel endodontic files and their resistance to fracture due to cyclic fatigue. The study included five different brands of stainless steel endodontic files: SybroEndo Triple-Flex Files (Kerr, Glendora, USA), Ready Steel K-Flexofile (Dentsply Sirona, Ballaigues, Switzerland), Mani Flexile Files (Mani, Tochigi- Ken, Japan), FKG K-Files (FKG, La Chaux-de-Fonds, Switzerland) and Zipperer Flexicut Files (VDW, Munich, Germany). Twelve files per brand (total 60 files) were evaluated. File surface roughness over an area (Sa) was quantified using a focus variation microscope. Then the files were subject to a cyclical fatigue test to determine the number cycles to fracture due to fatigue and length of fractured fragment. Finally, fractographic analysis was performed using a scanning electron microscope. The electropolished Ready Steel K-Flexofile® files had the highest roughness according to Sa parameters, though they also had the highest resistance to fracture due to cyclic fatigue and the longest fractured fragment. Moderate positive correlation was found between fractured fragment length and roughness. The fractured surface showed characteristics of ductile fracture with cracks and plastic deformation. The electropolished stainless steel Ready Steel K-Flexofile® files were the most resistant to fracture due to cyclic fatigue even though they had highest surface roughness.

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