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Investigation of self-healing behavior of Engineered Cementitious Composites (ECC) materials

机译:工程水泥复合材料(ECC)材料的自愈性能研究

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摘要

Crack characteristics of M45-ECC and HFA-ECC specimens pre-loaded to strain levels of 0.3%, 0.5%, 1.0% and 2.0% were investigated in this paper. This was done at different ages, resonant frequency and mechanical recovery behavior of re-healed ECC materials, new crack paths after reloading and the chemical analysis of healing products. Based on the experimental results, ECC with multiple micro-cracks benefits self-healing behavior. Longer aged samples and high fly ash contribute to create more cracks of smaller width. Wet/dry conditioning cycles aid self-healing, most of which occurs before 4-5 cycles. After 10 wet/dry cycles, RF recovery due to self-healing exceeds 75% for M45-ECC, 85% for HFA-ECC of different ages even at a 2.0% imposed pre-loaded damage. The tensile strain capacity of the major re-healed ECC is almost 2.0% for M45-ECC and 3.0% for HFA-ECC. Most of new cracks follow through the previous crack location after reloading. Self-healing products mainly include C-S-H and CaCCh.
机译:本文研究了预加载应变等级为0.3%,0.5%,1.0%和2.0%的M45-ECC和HFA-ECC试样的裂纹特性。这是在不同年龄,重新修复的ECC材料的共振频率和机械恢复性能,重新加载后的新裂纹路径以及愈合产品的化学分析中完成的。根据实验结果,具有多个微裂纹的ECC有利于自我修复。较长的老化样品和高粉煤灰有助于产生更多较小宽度的裂缝。湿/干调理循环有助于自我修复,其中大多数发生在4-5个循环之前。经过10个干/湿循环后,即使在施加2.0%的预加载损伤后,由于M45-ECC的自愈而导致的RF恢复超过75%,对于不同年龄的HFA-ECC则达到了85%。对于M45-ECC,主要重新修复的ECC的拉伸应变能力几乎为2.0%,对于HFA-ECC,则为3.0%。在重新加载后,大多数新裂缝都会沿着先前的裂缝位置移动。自我修复产品主要包括C-S-H和CaCCh。

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