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Interfacial behavior between normal substrate and green ultra-high-performance fiber-reinforced concrete under elevated temperatures

机译:高温下普通基材与绿色超高性能纤维增强混凝土之间的界面行为

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摘要

This study assesses the effects of elevated temperatures (100, 200, 300, 400, and 500 degrees C) on the bonding behavior of normal concrete (NC) substrate as old concrete and the new Green Universiti Sains Malaysia Reinforced Concrete (GUSMRC) as a repair material through slant shear, pull-off, splitting tensile, and flexural tests. Sandblasting (SB) and grinding (GR) surface treatments were employed to enhance the bond strength of the NC/GUSMRC composite. The research also evaluates the mechanical characteristics of the GUSMRC mix which 50% of its content is ultrafine palm oil fuel ash prior to and after the exposure to elevated temperatures. The results showed degradation in the mechanical properties of the monolithic GUSMRC and the bonding strength of the NC/GUSMRC composite after exposure to elevated temperatures; however, the bonding quality is excellent. Moreover, the SB surface treatment enhanced the interfacial bonding more than the GR surface treatment before and after elevated temperature exposure.
机译:这项研究评估了高温(100、200、300、400和500摄氏度)对普通混凝土(NC)基材作为旧混凝土的粘结行为的影响,以及新的绿色大学Sains Malaysia钢筋混凝土(GUSMRC)的影响。通过倾斜的剪切,剥离,拉伸断裂和弯曲测试来修复材料。喷砂(SB)和磨削(GR)表面处理被用来增强NC / GUSMRC复合材料的粘结强度。该研究还评估了GUSMRC混合物的机械特性,该混合物的50%是暴露于高温前后的超细棕榈油燃料灰。结果表明,在高温下,整体式GUSMRC的力学性能下降,NC / GUSMRC复合材料的粘结强度降低。但是,粘合质量极好。此外,在高温暴露之前和之后,与GR表面处理相比,SB表面处理增强了界面键合。

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