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Determination of Mixed Mode (I/II) SIFs of Cracked Orthotropic Materials

机译:裂解正交材料的混合模式(I / II)SIF的测定

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Strain gage techniques have been successfully but sparsely used for the determination of stress intensity factors (SIFs) of orthotropic materials. For mode I cases, few works have been reported on the strain gage based determination of mode I SIF of orthotropic materials. However, for mixed mode (I/II) cases, neither a theoretical development of a strain gage based technique nor any recommended guidelines for minimum number of strain gages and their locations were reported in the literature for determination of mixed mode SIFs. The authors for the first time came up with a theoretical proposition to successfully use strain gages for determination of mixed mode SIFs of orthotropic materials [1]. Based on these formulations, the present paper discusses a finite element (FE) based numerical simulation of the proposed strain gage technique employing [902/0]ios carbon-epoxy laminates with a slant edge crack. An FE based procedure has also been presented for determination of the optimal radial locations of the strain gages apriori to actual experiments. To substantiate the efficacy of the proposed technique, numerical simulations for strain gage based determination of mixed mode SIFs have been conducted. Results show that it is possible to accurately determine the mixed mode SIFs of orthotopic laminates when the strain gages are placed within the optimal radial locations estimated using the present formulation.
机译:应变量技术已成功但稀疏地用于测定正交材料的应力强度因子(SIF)。对于Mode I案例,已经在基于应变计的基础测定的正向材料的测定中报告了很少的作用。然而,对于混合模式(I / II)病例,在文献中,既没有基于应变计作者首次提出了理论命题,以成功使用应变测量来测定正交材料的混合模式SIF [1]。基于这些制剂,本文讨论了基于有限元(Fe)的基于有限元模拟,其采用倾斜边缘裂纹的[902/0] IOS碳 - 环氧树脂层压材料。还提出了基于Fe的程序,用于测定应变计APRIORI的最佳径向位置到实际实验。为了证实所提出的技术的功效,已经进行了基于应变计的基于菌株SIF的测定的数值模拟。结果表明,当应变计被放置在使用本制剂估计的最佳径向位置内时,可以精确地确定原位层压板的混合模式SIFS。

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