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首页> 外文期刊>Journal of Polymers and the Environment >Experimental Investigation of Long Term Seawater Durability and Shear Properties of Pultruded GFRP Composite
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Experimental Investigation of Long Term Seawater Durability and Shear Properties of Pultruded GFRP Composite

机译:拉挤GFRP复合材料长期海水耐久性及剪切性能的实验研究

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The effect of long term immersion in seawater at different temperatures on the properties of pultruded glass fibre reinforced polymer (GFRP) composite rebar was investigated. Samples were conditioned in seawater and in dry at 23, 55 and 75 degrees C for 0, 8, 20, 30 and 36 months to analyse the changes in shear properties such as transverse shear strength (TSS) and short beam shear strength (SBSS). Both TSS and SBSS increased after conditioning in dry at 55 and 75 degrees C; on the other hand, TSS decreased gradually due to conditioning in seawater at 23, 55 and 75 degrees C, whereas SBSS decreased due to conditioning in seawater only at 75 degrees C. Microscopic analysis specified that the shear strength decreased due to fibre/matrix interfacial failure as a result of de-bonding and fibre pull-out. Compared to the short beam shear test, the transverse shear test was found to be a sensitive technique to measure the durability of pultruded GFRP rebar. FT-IR analysis indicated superficial hydrolysis reaction of polymer matrix occurred when the sample was conditioned at 75 degrees C. A reversible change in glass transition temperature (T-g) and in viscoelastic property of the polymer matrix was observed due to conditioning in seawater at 23 and 55 degrees C.
机译:研究了长期浸入水水在不同温度下的影响对不同温度的覆盖玻璃纤维增​​强聚合物(GFRP)复合钢筋的特性。将样品在海水中调节,在23,55和75℃下干燥0,8,20,30和36个月,以分析剪切性能的变化,例如横向剪切强度(TSS)和短束剪切强度(SBSS) 。在55和75摄氏度干燥后,在干燥后,TSS和SBS也增加;另一方面,由于在23,55和75摄氏度的海水中调节,Tss逐渐减少,而SBSS由于仅在75摄氏度下的海水中的调节而降低。显微镜分析指定由于纤维/基质界面引起的剪切强度降低由于去粘接和纤维拉出而失败。与短梁剪切试验相比,发现横向剪切测试是测量拉挤金轮路钢筋的耐久性的敏感技术。 FT-IR分析表明,当样品在75℃下调节样品时,将出现浅表水解反应。由于在23个和海水中的调节,观察到玻璃化转变温度(Tg)和聚合物基质的粘弹性的可逆变化。 55℃。

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