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首页> 外文期刊>Journal of Applied Polymer Science >Effect of thermo-oxidative aging on surface characteristics of benzoxazine and epoxy copolymer
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Effect of thermo-oxidative aging on surface characteristics of benzoxazine and epoxy copolymer

机译:热氧化老化对苯并恶嗪和环氧共聚物表面特征的影响

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The copolymer of bisphenol A-based benzoxazine and cycloaliphatic epoxy resin possesses greater processability and glass-transition temperature compared to that of benzoxazine homopolymer, making it suitable for high-temperature aerospace applications. The aim of this work is to investigate the behavior of the copolymers under thermos-oxidative aging conditions using the surface characterization techniques. The benzoxazine homopolymer and copolymer samples were thermally aged in an air-circulating oven under controlled temperatures of 180 and 200 degrees C for various periods of time up to 24 weeks. The thermo-oxidative-induced weight change and surface cracking were monitored for samples during the aging period. As an alternative method to characterize thermal aging, static contact angle, and contact angle hysteresis of samples were measured over time. Moreover, droplet impact tests using deionized water were performed on stationary and moving samples to investigate the effects of aging time and temperature on impact dynamics of droplets. In addition, FTIR analysis was performed to evaluate the chemical changes on the surface of samples. The results indicated the extent of degradation of aged samples increased with increasing the aging time and temperature. In addition, the copolymer of cycloaliphatic epoxy and benzoxazine showed a greater amount of thermos-oxidative degradation than the one for benzoxazine homopolymer. More importantly, the results obtained from the surface analysis measurements (e.g., contact angle) followed a similar trend to the one obtained from the traditional aging experiments (e.g., weight change). This showed the former nondestructive and simple method can be used to monitor thermal aging of materials in service.
机译:与苯并恶嗪均聚物相比,双酚A基苯并恶嗪和环脂肪族环氧树脂的共聚物具有更高的可加工性和玻璃化转变温度,使其适用于高温航空航天应用。本工作的目的是利用表面表征技术研究共聚物在热氧化老化条件下的行为。苯并恶嗪均聚物和共聚物样品在控制温度为180和200°C的空气循环烘箱中热老化长达24周的不同时间段。在老化期间,对样品的热氧化引起的重量变化和表面开裂进行了监测。作为表征热老化的替代方法,测量了样品的静态接触角和接触角滞后随时间的变化。此外,使用去离子水对静止和移动样品进行了液滴冲击试验,以研究老化时间和温度对液滴冲击动力学的影响。此外,还进行了FTIR分析,以评估样品表面的化学变化。结果表明,老化样品的降解程度随着老化时间和温度的增加而增加。此外,环脂族环氧树脂和苯并恶嗪的共聚物比苯并恶嗪均聚物表现出更大的热氧化降解量。更重要的是,从表面分析测量(例如接触角)获得的结果与从传统老化实验(例如重量变化)获得的结果具有相似的趋势。这表明,前一种无损、简单的方法可以用于在役材料的热老化监测。

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