基于力学化学材料的纤维增强复合材料损伤前兆原位检测

B. Koo, Jack Miller, Ryan Gunckel, A. Chattopadhyay, Lenore L. Dai
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引用次数: 0

摘要

研究了应力响应材料在机械载荷作用下的光响应特性。开发了一种新的实验系统,通过记录单轴负载测试中紫外线激发的荧光来捕捉机械团的原位激活。合成了蒽基机械基团二聚体9-蒽羧酸(Di-AC),并成功地将其掺入环氧基热固性材料中。将该Di-AC包埋环氧树脂混合物应用于玻璃纤维织物中,通过手工铺层法制备机械团包埋玻璃纤维增强聚合物(GFRP)复合材料。采用准静态和循环载荷研究了不同类型载荷对机械团活化的影响。结果表明,机械团激活发生在准静态加载试验开始时,并在屈服前呈线性持续。微裂纹在屈服前在基体中形成,机械团的UV强度表现出非线性响应。在疲劳试验中,经过一定循环次数后,荧光强度增加。疲劳试验中期前后出现微裂纹,强度也呈现非线性响应。观察了蒽基力学团在复合荷载作用下对玻璃钢早期损伤检测的潜力。
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In-situ Damage Precursor Detection in Fiber Reinforced Composites Using Mechanochemical Materials
Optical responses of mechanophore (stress-responsive materials) in fiber reinforced polymer composites under mechanical loads were characterized. A new experimental system was developed to capture in situ mechanophore activation by recording ultraviolet (UV) excited fluorescence during uniaxial load tests. Anthracene- based mechanophore, dimeric 9-anthracene carboxylic acid (Di-AC) was synthesized and incorporated into an epoxy-based thermoset successfully. This Di-AC embedded epoxy mixture was applied to glass fiber fabric to fabricate mechanophore embedded glass fiber reinforced polymer (GFRP) composites through hand-layup process. Quasistatic and cyclic loads were performed to investigate the effect of different types of loads on mechanophore activation. The results indicated that mechanophore activation occurred at the beginning of the test during the quasistatic loading test and continued linearly before yield. Microcracks were formed in the matrix prior to yield, and UV intensity of the mechanophore exhibited nonlinear response. During fatigue tests, the intensity of fluorescence increased after a certain number of cycles. Microcracks were initiated around the middle stage of the fatigue test, the intensity also showed a nonlinear response. The potential of anthracene-based mechanophore for early damage detection in GFRP under complex loading was observed.
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