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Evaluation and Observation of Autogenous Healing Ability of Bond Cracks along Rebar

机译:钢筋粘结裂纹自生愈合能力的评价与观察

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摘要

Micro cracks occurring in concrete around tensile rebar is well known latent damage phenomenon. These micro cracks develop, and can be detected after reaching the surface of the concrete. Detection of these cracks before they are fully formed is preferable, but observing the whole crack structure is difficult. Another problem is repairing micro cracks under the concrete surface. The autogenous ability of bond cracks along rebar was evaluated using the air permeability test. Air permeability coefficients were measured before and after tensile loading, and experimental air permeability coefficients became larger near cracks along rebar as a result of tensile loading. Recuring for 28 days after tensile loading made the air permeability coefficients smaller, but this restriction only occurred during water recuring. Observation of crack patterns helped the understanding of change in the air permeability coefficients. Several small cracks along rebar were observed after tensile loading, and most cracks along rebar were not found after water recuring. On the other hand, the crack pattern did not change after air recuring. These results indicate that bond cracks along rebar can be closed by autogenous healing, and cause the air permeability coefficients.
机译:众所周知,在钢筋周围的混凝土中产生的微裂纹是潜在的破坏现象。这些微裂纹会发展,并且可以在到达混凝土表面后被检测到。优选在这些裂纹完全形成之前对其进行检测,但是难以观察整个裂纹结构。另一个问题是修复混凝土表面下的微裂纹。使用透气性测试评估沿钢筋的粘结裂纹的自生能力。在拉伸载荷之前和之后测量透气系数,并且由于拉伸载荷,沿裂纹的实验附近的透气系数变大。在拉伸载荷作用下恢复28天后,透气系数变小,但是这种限制仅发生在恢复水的过程中。观察裂纹图案有助于理解透气系数的变化。拉伸载荷后,沿钢筋观察到一些小裂缝,回水后未发现沿钢筋的大多数裂缝。另一方面,空气恢复后,裂纹图案没有变化。这些结果表明,沿钢筋的粘结裂纹可通过自生愈合而封闭,并导致透气系数增大。

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