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Investigation of Microstructural Damage in Ultrahigh-Performance Concrete under Freezing-Thawing Action

机译:冻融作用下超高性能混凝土的微观结构破坏研究

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This work aims to investigate the damage in ultrahigh-performance concrete (UHPC) caused by freezing-thawing action. Freezing-thawing tests were carried out on UHPCs with and without steel fibers. Mercury intrusion porosimetry (MIP), scanning electron microscopy (SEM), and X-ray computed tomography (X-ray CT) were applied to detect the microstructure of the UHPC matrix before and after the freezing-thawing tests. The results showed that UHPC possessed very excellent freezing-thawing resistance due to its dense microstructure. After the freezing-thawing action, cracks occurred and were prone to initiate at the sand-paste interface in the UHPC matrix. MIP results also indicated that cracks appeared in the UHPC matrix after the freezing-thawing action. The number of defects that can be seen by X-ray CT increased in UHPC after the freezing-thawing action as well. The mismatch of the thermal expansion coefficients of the aggregate and the paste is considered to be the reason for the cracking at the sand-paste interface. The steel fibers in UHPC inhibited the propagation of cracks in the matrix and improved the freezing-thawing performance of UHPC.
机译:这项工作旨在研究冻融作用对超高性能混凝土(UHPC)的破坏。在有或没有钢纤维的UHPC上进行了冻融测试。在冻融测试之前和之后,采用水银压入孔隙率法(MIP),扫描电子显微镜(SEM)和X射线计算机断层扫描(X射线CT)检测UHPC基质的微观结构。结果表明,UHPC由于其致密的微观结构而具有非常优异的抗冻融性。冻融作用后,UHPC基体中的砂浆界面出现裂纹并易于引发裂纹。 MIP结果还表明,冻融作用后UHPC基体中出现裂纹。在冻融作用下,UHPC中通过X射线CT可以看到的缺陷数量也增加了。骨料和糊料的热膨胀系数的不匹配被认为是在砂-糊料界面处开裂的原因。 UHPC中的钢纤维抑制了基体中裂纹的扩展,并改善了UHPC的冻融性能。

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