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On the use of Strain-Hardening Cementitious Composite covers to mitigate corrosion in reinforced concrete structures

机译:关于使用应变硬化水泥复合材料覆盖物减轻钢筋混凝土结构的腐蚀

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摘要

Previous research has shown the effectiveness of Strain-Hardening Cementitious Composites (SHCC) in mitigating corrosion-induced damage in reinforced-concrete (RC) structural members due to the inherently limited crack widths of this material. The objective of this research is to investigate whether using SHCC only in the cover of a RC member is as effective in mitigating corrosion-induced damage as using SHCC in the entire member. Potentiostatic accelerated macro-cell corrosion experiments with wetting and drying cycles were used to simulate corrosion-induced damage in four different types of cylindrical specimens with steel reinforcement: type (a) made entirely with normal concrete, type (b) made entirely with SHCC, type (c) made with a conventional concrete core and an intact SHCC shell, and type (d) made with a conventional concrete core and a pre-damaged SHCC shell. Results show that the extent of corrosion damage, as measured by rebar mass loss over time, in types (b) and (c) is similar. Furthermore, in spite of the pre-existing damage, type (d) specimens offer corrosion protection similar to type (a) specimens. These results, combined with additional investigations on shrinkage and bond strengths between SHCC and concrete, demonstrate the feasibility of using precast SHCC shells for effective mitigation of corrosion in RC structures. (C) 2019 Elsevier Ltd. All rights reserved.
机译:先前的研究表明,由于这种材料固有的有限的裂缝宽度,应变硬化水泥基复合材料(SHCC)在减轻钢筋混凝土(RC)结构构件中的腐蚀引起的损伤方面是有效的。这项研究的目的是研究仅在RC构件的外壳中使用SHCC是否与在整个构件中使用SHCC一样有效地减轻腐蚀引起的损坏。带有润湿和干燥循环的恒电位加速大单元腐蚀实验被用来模拟四种不同类型的带钢筋的圆柱试样的腐蚀引起的破坏:(a)类型完全由普通混凝土制成,(b)类型完全由SHCC制造,类型(c)由常规混凝土芯和完整的SHCC外壳制成,类型(d)由常规混凝土芯和预损坏的SHCC外壳制成。结果表明,通过钢筋随时间的质量损失来衡量,类型(b)和(c)的腐蚀破坏程度相似。此外,尽管已经存在损坏,但(d)型试样仍提供与(a)型试样相似的腐蚀防护。这些结果,加上对SHCC与混凝土之间的收缩率和粘结强度的其他研究,证明了使用预制的SHCC壳有效缓解RC结构中的腐蚀的可行性。 (C)2019 Elsevier Ltd.保留所有权利。

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