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首页> 外文期刊>Defence Science Journal >Charpy Impact Response of the Cracked Aluminum Plates Repaired with FML Patches using the Response Surface Methodology
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Charpy Impact Response of the Cracked Aluminum Plates Repaired with FML Patches using the Response Surface Methodology

机译:使用响应面方法对用FML修补剂修补的破裂铝板的夏比冲击响应

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摘要

Here, the effect of fiber metal laminate (FMLs) patches was studied for repairing of single-sided cracked aluminum plates experimentally to see their response to Charpy impact tests. The main desired parameters were composite patch lay-up, crack length, and crack angle each one in three levels. All experimental attempts generated and followed based on the design of experiments method by using of response surface methodology. The predicted energy absorption values obtained from the model were in good agreement with the experimental results. No matter the specimens were repaired or not, as the crack length was increased the energy absorption of the structure was decreased. The experimental results also showed that for lengthen cracks, increasing of the crack angle had more effect on energy absorption. Also it was observed that the patch lay-up effective on the impact response of the specimens. The more the metal layer was departed from the aluminum plate and the FML patches interfacial surface, the less energy was absorbed in the structure.
机译:在这里,通过实验研究了纤维金属层压板(FML)贴片对单面破裂铝板的修复效果,以观察其对夏比冲击试验的响应。主要需要的参数是复合膜的铺贴,裂缝长度和裂缝角度,每三个级别一个。根据实验方法的设计,使用响应面法生成并遵循所有实验尝试。从模型获得的预测能量吸收值与实验结果非常吻合。无论样品是否修复,随着裂纹长度的增加,结构的能量吸收都会降低。实验结果还表明,对于延长裂纹,增加裂纹角度对能量吸收的影响更大。还观察到贴剂叠层对样品的冲击响应有效。金属层与铝板和FML贴片界面的距离越远,结构吸收的能量越少。

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