首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >Mathematical modeling of flexural behavior of rotary nickel-titanium endodontic instruments.
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Mathematical modeling of flexural behavior of rotary nickel-titanium endodontic instruments.

机译:旋转镍钛牙髓器械弯曲行为的数学模型。

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摘要

The aim of the present study was to establish a mathematical model to characterize the flexural behavior of nickel-titanium (NiTi) rotary instruments. The bending behavior of ProFile (0.06 and 0.04 tapers), K-3 (0.06 taper), Quantec (0.04 taper) with tip size of ISO 25, was assessed by pressing the tip of the static rotary file against a smooth, freely movable, glass surface. The deflected instrument was photographed digitally, and the deflection path was digitized in software, to which data a function was fitted that best described the bending behavior of the instrument. It was found that all instruments deflected in a manner closely resembling a negative exponential function: y = A x e(-x/b). The present approach indicated that the analytical difficulties of handling the complex cross-section in tapering spirals in beam-bending theory may be circumvented by a practical and elementary curve-fitting method.
机译:本研究的目的是建立一个数学模型来表征镍钛(NiTi)旋转仪的弯曲行为。通过将静态旋转锉刀的尖端压在光滑,可自由移动的尖端上,评估ProFile(0.06和0.04锥度),K-3(0.06锥度),Quantec(0.04锥度)的尖端尺寸为ISO 25的弯曲行为。玻璃表面。对偏转的仪器进行数字化拍照,并在软件中将偏转路径数字化,并向该数据中拟合了最能描述仪器弯曲行为的功能。发现所有仪器都以类似于负指数函数的方式偏转:y = A x e(-x / b)。本方法表明,在束弯曲理论中处理逐渐变细的螺旋线中的复杂横截面的分析困难可以通过实用的基本曲线拟合方法来解决。

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