首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Investigation on interlaminar properties of photopolymerizable resin repaired GFRPs during long-term acid ageing
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Investigation on interlaminar properties of photopolymerizable resin repaired GFRPs during long-term acid ageing

机译:可光聚合树脂在长期酸老化期间GFRPS修复GFRP的思想性研究

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Fiber reinforced plastics (FRPs) are extensively utilized in various applications due to their excellent comprehensive properties. However, the weak interlaminar property and durability of FRPs have been repeatedly mentioned as limitations in applications that include complex loading conditions. The remediation of FRPs has recently become a research focus for lifetime extension and strength reversion. Photopolymerizable resins, as a novel matrix material and an alternative for thermal polymerizable resins, have the advantages of short operation time, low price, and low equipment requirements. This study investigated the durability in long-term acid atmosphere exposure environment of photo and thermal polymerizable resin repaired GFRP. External glass fabric patches impregnated with the photo or thermal polymerizable resins were attached to pre-damaged fundamental specimens to conduct the remediation, followed by room temperature (RT) or UV irradiation for curing processing. The repaired specimens were positioned in the laboratory-fabricated hermetically-sealed condensation device. The 10 vol.% sulphuric acid (pH=0.76) was chosen as the source to generate the acidic atmosphere. The total ageing time was sustained for eight weeks (over 1300 h), and ILSS and DCB tests were performed every seven days, together with morphology observation. Better interlaminar properties retention and stability were revealed after eight weeks ageing for UV repaired specimens. The hardener is a factor that tends to increase the acid penetration rate, which is thought of as the mechanism of the better acid resistance of the UV repaired specimens.
机译:由于其优异的综合性质,纤维增强塑料(FRPS)广泛使用各种应用。然而,由于包括复杂的装载条件的应用中,已经多次被提及FRP的弱层面性能和耐久性。 FRP的修复最近成为终身延伸和强度逆转的研究重点。可光聚合的树脂作为新型基质材料和可热聚合树脂的替代方案,操作时间短,价格低廉,设备要求低。本研究研究了光学和可热聚合树脂的长期酸气氛暴露环境中的耐久性修复了GFRP。将外部玻璃织物贴片用光或可热聚合树脂浸渍在预损坏的基本样本中,进行修复,然后进行室温(RT)或用于固化加工的UV辐射。修复的样品定位在实验室制造的气密密封的冷凝装置中。选择10体积%硫酸(pH = 0.76)作为源以产生酸性气氛。总老化时间持续八周(超过1300小时),每七天进行ILS和DCB测试,以及形态观察。对于UV修复标本八周龄衰老后,揭示了更好的层间性能保留和稳定性。硬化剂是倾向于提高酸性渗透率的因素,这被认为是UV修复标本更好的耐酸性的机制。

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