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Simple and Fast Method to Calculate Shape Factors of Stiffened Panels Repaired with Composites

机译:用复合材料修复加强板的形状因子简单快速的方法

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摘要

In this paper, a new, simple, and robust method is presented to calculate the shape factor and stress intensity factor (SIF) of cracked stiffened panels in a mode-I condition repaired with a single-side composite patch. For this purpose, huge finite element (FE) analyses are carried out to achieve a simple equation using normalized parameters and a fitting technique for a vast range of repaired stiffened panels. The parametric study was performed using five effective parameters, including crack length, stiffeners and panel moment of inertia, material, and thickness of the composite patch. Using the proposed formulation in this paper, performing the complex and time-consuming FE analyses to calculate the stress intensity factors for such repaired complex components is not necessary. The obtained results are verified using several FE models. The maximum differences between the predicted shape factors using the proposed equation with those obtained from FE analyses are indicated to be approximately 7%, which is acceptable for engineering purposes. (c) 2019 American Society of Civil Engineers.
机译:在本文中,提出了一种新的简单和鲁棒的方法,以计算用单面复合贴片修复的模式 - I条件中裂化加强板的形状因子和应力强度因子(SIF)。为此目的,执行巨大的有限元(FE)分析,以实现使用标准化参数的简单方程和用于各种修复的加强面板的拟合技术。使用五个有效参数进行参数研究,包括裂缝长度,加强件和惯性惯性,材料和厚度的面板。在本文中使用所提出的制剂,不需要进行复杂且耗时的Fe分析以计算这种修复的复杂部件的应力强度因子。使用几种FE模型来验证所获得的结果。使用所提出的等式与来自Fe分析获得的方程之间的预测形状因子之间的最大差异为约7%,这对于工程目的是可接受的。 (c)2019年美国土木工程学会。

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