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首页> 外文期刊>Journal of intelligent material systems and structures >Detection of crack formation and stress distribution for carbon fiber-reinforced polymer specimens through triboluminescent-based imaging
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Detection of crack formation and stress distribution for carbon fiber-reinforced polymer specimens through triboluminescent-based imaging

机译:通过基于摩擦发光的成像检测碳纤维增强聚合物试样的裂纹形成和应力分布

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This article demonstrates the ability of surface-coated triboluminescent materials to detect damage in carbon fiber-reinforced polymer specimens. An experimental protocol was developed to test the efficiency of the triboluminescent-based diagnostic method using carbon fiber-reinforced polymer coupons under combined bending-compression conditions. Luminescence, emitted from the triboluminescent coatings under quasi-static loading, was detected by capturing digital images. We employed image processing software to quantify change in luminescence as a function of triboluminescent concentration. We observed that 10%, 20%, and 30% triboluminescent coating resulted in 25.3, 27.9, and 40.4 (arbitrary units) total luminescence, respectively, which shows a positive correlation of triboluminescent concentration with luminescence. Finite element simulation was also performed to understand the stress and strain distribution and to aid in understanding and correlating light emission regions on the carbon fiber-reinforced polymer coupons under bending deformation. This work represents a step toward the development of a robust technology that employs triboluminescent materials for early damage detection, consistent with theoretical predictions of damage occurrence.
机译:本文展示了表面涂覆的摩擦发光材料检测碳纤维增强聚合物样品中损伤的能力。开发了实验方案以测试在组合的弯曲压缩条件下使用碳纤维增强的聚合物试样的基于摩擦发光的诊断方法的效率。通过捕获数字图像来检测在准静态负载下从摩擦发光涂层发出的发光。我们采用图像处理软件来量化发光变化与摩擦发光浓度的关系。我们观察到10%,20%和30%的摩擦发光涂层分别导致25.3、27.9和40.4(任意单位)的总发光,这表明摩擦发光浓度与发光呈正相关。还进行了有限元模拟,以了解应力和应变分布,并有助于理解和关联弯曲变形下碳纤维增强的聚合物试样上的发光区域。这项工作代表了开发强大技术的一步,该技术采用摩擦发光材料进行早期损伤检测,与损伤发生的理论预测相一致。

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