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Influence of steel fiber corrosion on tensile properties and cracking mechanism of ultra-high performance concrete in an electrochemical corrosion environment

机译:钢纤维腐蚀对电化学腐蚀环境超高性能混凝土拉伸性能及裂缝机理的影响

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In this paper, the mechanisms by which the tensile mechanical properties of ultra-high performance concrete (UHPC) are influenced by the degree of steel fiber corrosion are investigated via accelerated electrochemical corrosion, direct tensile testing, and acoustic emission (AE) analysis. The elastic modulus is shown to decrease, while the ultimate tensile strength initially increases and subsequently decreases, with increasing corrosion time. Further, an increased degree of corrosion is shown to decrease the crack control capability of the UHPC such that crack widths rapidly increase and a large amount of AE energy is generated. Concurrently, the cracking behavior due to corrosion of the steel fiber network is examined by X-ray computed tomography (X-ray CT), revealing that corrosion cracking and cambium spalling are facilitated by concentration of the steel fibers. In the case of a small amount of corrosion, the chloride ions permeation is found to be small, and the corrosion only occurs on the surface of the specimens. With increased corrosion time, however, chloride ions gradually penetrate into the interior of the specimen, thus increasing the degree of corrosion. Finally, a formula is established for predicting the time of corrosion cracking in the concrete cover, and a parametric analysis is performed. (C) 2021 Elsevier Ltd. All rights reserved.
机译:本文通过加速电化学腐蚀,直接拉伸试验和声发射(AE)分析,研究了超高性能混凝土(UHPC)的拉伸力学性能受钢纤维腐蚀程度的影响的机制。弹性模量显示降低,而最终的拉伸强度最初增加并随后降低,随着腐蚀时间的增加。此外,示出了增加的腐蚀程度来降低UHPC的裂缝控制能力,使得产生裂缝宽度迅速增加并且产生大量的AE能量。同时,通过X射线计算机断层扫描(X射线CT)检查引起的钢光纤网络引起的开裂行为,揭示了通过钢纤维的浓度促进腐蚀裂纹和嵌板剥落。在少量腐蚀的情况下,发现氯化物离子渗透为小,并且腐蚀仅发生在样本的表面上。然而,随着腐蚀时间的增加,氯离子逐渐渗透到样本的内部,从而增加腐蚀程度。最后,建立了用于预测混凝土盖中腐蚀裂缝的时间的公式,并且进行参数分析。 (c)2021 elestvier有限公司保留所有权利。

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