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Effect of sustained flexural loading on self-healing of engineered cementitious composites

机译:持续弯曲载荷对工程胶凝复合材料自修复的影响

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摘要

This paper aims to clarify the effects of sustained flexural loading on the self-healing behavior of Engineered Cementitious Composites (ECC). Prismatic specimens of ECC mixtures with two different levels of Class-F fly ash content were cast. Flexural loading was applied to the specimens at 28 days age to generate severe amount of microcracks. The specimens were then stored under continuous water or air exposures with or without sustained mechanical loading, for up to 90 days. For specimens under sustained mechanical loading, the applied sustained load level was 60% of the ultimate flexural strength. The extent of damage was determined as a percentage of loss in mechanical properties. The influences of different exposure regimes and sustained mechanical loading on mechanical properties of ECC mixtures were investigated. Microstructural changes within the microcracks were also analyzed.
机译:本文旨在阐明持续挠曲载荷对工程胶凝复合材料(ECC)自愈性能的影响。铸造了具有两种不同水平的F级飞灰含量的ECC混合物的棱镜标本。在28天时对样品施加弯曲载荷,以产生大量的微裂纹。然后将样品在连续的水或空气暴露下,无论是否承受持续的机械负载,均可以存储90天。对于承受持续机械载荷的试样,施加的持续载荷水平为极限抗弯强度的60%。损坏程度确定为机械性能损失的百分比。研究了不同的暴露方式和持续的机械载荷对ECC混合物力学性能的影响。还分析了微裂纹内的微结构变化。

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