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Effect of severe chloride environment on the flexural behaviour of hybrid concrete systems

机译:严重氯化物环境对混合混凝土系统弯曲行为的影响

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This paper reports an investigation into the effect of a severe chloride environment on the flexural behaviour and microstructure of concrete composites combining normal- or high-strength concrete and ultra-high-performance fibre-reinforced concrete (UHPFRC). The normal- or high-strength concrete layers were used in the compression area while the UHPFRC, with three different fibre contents (1, 1.5 and 2%), was in tension. The goal was to measure the degradation of the bonding area and to investigate possible physical debonding under long-term exposure to a severe chloride environment. The microstructurel properties of the degraded bond zone were examined by scanning electron microscopy, energy dispersive X-ray spectroscopy and backscattered electron imaging after 600 d of cycling exposure. The test results revealed that severe chloride exposure influenced the flexural capacity of the concrete composites. However, the bond between the normal- or high-strength concrete and UHPFRC layers was maintained without any distinctive degradation. In addition, an increase in the fibre volume in the UHPFRC layer significantly improved the mechanical resistance of concrete composite specimens, although higher chloride penetration depths were registered at increased fibre contents.
机译:本文报告了对抗氯化物环境对混凝土复合材料的弯曲行为和微观结构的调查,与正常或高强度混凝土和超高效纤维钢筋混凝土(UHPFRC)相结合的混凝土复合材料的弯曲行为和微观结构。在压缩区域中使用正常或高强度混凝土层,而UHPFRC具有三种不同的纤维含量(1,1.5和2%)。目标是衡量粘合面积的降解,并在长期暴露于严重的氯化物环境下调查可能的物理剥离。通过扫描电子显微镜,能量分散X射线光谱和600 d循环暴露后的循环曝光后的能量分散X射线光谱和反向散射电子成像来检查降解粘结区的微观结构。测试结果表明,严重的氯化物曝光会影响混凝土复合材料的弯曲能力。然而,维持正常或高强度混凝土和UHPFRC层之间的粘合而没有任何独特的降解。此外,UHPFRC层中纤维体积的增加显着改善了混凝土复合标本的机械电阻,尽管在增加的纤维内容物上注册了较高的氯化物渗透深度。

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