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Cyclic fatigue of ProTaper instruments.

机译:ProTaper仪器的循环疲劳。

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摘要

The present work evaluated the influence of the curved segment length of artificial root canals (the arc) and the number of cycles necessary to fracture engine-driven nickel-titanium endodontic instruments. ProTaper F3 25-mm files at 250 rpm were used in two artificial canals. The artificial canals were made of stainless steel with an inner diameter of 1.04 mm, a total length of 20 mm, and arc on the ends with a radius of curvature of 6 mm. The arc length of the first tube measured 9.4 mm, and the straight part measured 10.6 mm. The second tube was 14.1 mm long, and the straight part measured 5.9 mm. We determined the fracture surface distances and the number of cycles necessary to induce fatigue fracture in the ProTaper F3 instruments. The fracture surfaces and the helical shaft of the instruments were investigated using a scanning electron microscope. The results indicated that the required number of cycles to cause a fracture was influenced by the canal arc length, the morphology of the fractured surface presented ductile characteristics, and plastic deformation in the helical shaft of the fractured instruments did not occur.
机译:本工作评估了人工根管弯曲段长度(弧)的影响以及使发动机驱动的镍钛牙髓器械断裂所需的循环次数。将ProTaper F3 25毫米锉刀以250 rpm的速度用于两个人工运河中。人造运河由内径为1.04毫米,总长度为20毫米的不锈钢制成,其端部的弧度为6毫米。第一管的弧长为9.4 mm,笔直部分的弧长为10.6 mm。第二根管长14.1毫米,笔直部分为5.9毫米。我们确定了ProTaper F3仪器的断裂表面距离和引起疲劳断裂所需的循环次数。使用扫描电子显微镜研究器械的断裂表面和螺旋轴。结果表明,引起骨折的所需循环次数受根管弧长的影响,破裂表面的形态呈现出延性,并且在破裂器械的螺旋轴中未发生塑性变形。

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