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On the effect of curing time and environmental exposure on impregnated Carbon Fabric Reinforced Cementitious Matrix (CFRCM) composite with design considerations

机译:设计时考虑的固化时间和环境暴露对浸渍碳纤维增强水泥基复合材料的影响

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This paper investigates the effect of curing time and aggressive environmental exposure on the mechanical performance of impregnated Carbon Fabric Reinforced Cementitious Matrix (CFRCM) composite. Following the recently published IIC-ES AC434 guidelines, saltwater, distilled water, alkali and acid resistance are investigated together with freeze-thaw cycles. Mechanical characterization is based on tensile uni-axial tests under deformation control of rectangular-base prismatic specimens. 28- and 60-day curing times are considered for the control environment as well as for saltwater and alkali resistance. Deformation is monitored via digital acquisition. Besides uni-axial tests, experimental results comprise optical and scanning electron microscopy, crack pattern analysis and failure mechanism assessment. Focus is set on the determination of the design limits for the composite system at failure for the tested environments and curing times. In particular, a comparison is drawn with established design criteria already coded for FRP systems, which introduce the concept of safety (or partial) factors. Environmental conversion factors are also defined and calculated on a statistical basis in a twofold manner, as a mean to determine the design strain and strength limits of exposed specimens from the control (unexposed) data. It is found that they provide a convenient method for assessing the composite vulnerability to the aggressive environments at different curing times. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文研究了固化时间和侵蚀性环境暴露对浸渍碳纤维增强水泥基复合材料(CFRCM)复合材料力学性能的影响。根据最近发布的IIC-ES AC434指南,对盐水,蒸馏水,耐碱和耐酸性以及冻融循环进行了研究。力学特性基于矩形基础棱柱试样变形控制下的拉伸单轴试验。对于控制环境以及耐盐水和耐碱性,应考虑28天和60天的固化时间。通过数字采集监控变形。除单轴测试外,实验结果还包括光学和扫描电子显微镜,裂纹模式分析和破坏机理评估。重点是确定在测试环境和固化时间失败时复合系统的设计极限。特别是,与已经为FRP系统编码的既定设计标准进行了比较,引入了安全(或部分)因素的概念。还定义环境转换因子,并以统计方式以双重方式计算环境转换因子,作为从对照(未暴露)数据确定暴露样品的设计应变和强度极限的平均值。发现它们提供了一种方便的方法来评估复合材料在不同固化时间对侵蚀性环境的脆弱性。 (C)2016 Elsevier Ltd.保留所有权利。

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