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A strain gage technique for the determination of mixed mode stress intensity factors of orthotropic materials

机译:确定正交异性材料混合模应力强度因子的应变计技术

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A theoretical frame work is developed for strain gage based determination of mixed mode (K-I/K-II) stress intensity factors (SIFs) in slant edge cracked plate (SECP) made of orthotropic materials. Using three parameter strain series around the crack tip and appropriate stress functions, the present formulation shows that mixed mode SIFs in orthotropic materials could be determined using only four strain gages. A finite element based methodology is developed to determine the upper bound on the radial location (r(max)) of strain gages ensuring accurate determination of SIFs. Proposed technique is applied to numerical simulation of [0(2)/90](2S) and [0/+/- 45/90](S) glass-epoxy SECP laminates to demonstrate accurate determination of mixed mode SIFs by placing the gages within rmax. Results from the present work provide clear guidelines in terms of number of strain gages and their suggested locations for accurate determination of mixed mode SIFs in orthotropic materials. (C) 2016 Elsevier Ltd. All rights reserved.
机译:开发了理论框架,用于基于应变片的正交各向异性材料制成的倾斜边缘裂纹板(SECP)中混合模式(K-I / K-II)应力强度因子(SIF)的确定。通过使用裂纹尖端周围的三个参数应变系列和适当的应力函数,本公式表明,仅使用四个应变计即可确定正交各向异性材料中的混合模式SIF。开发了一种基于有限元的方法来确定应变计径向位置(r(max))的上限,以确保SIF的准确确定。拟议中的技术应用于[0(2)/ 90](2S)和[0 / + /-45/90](S)玻璃环氧树脂SECP层压板的数值模拟,以演示通过放置量规来精确确定混合模式SIF的方法在rmax之内。当前工作的结果为应变计的数量及其建议位置提供了明确的指导方针,以准确确定正交各向异性材料中的混合模式SIF。 (C)2016 Elsevier Ltd.保留所有权利。

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