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High-early-strength ductile cementitious composites with characteristics of low early-age shrinkage for repair of infrastructures

机译:具有低早期收缩特性的高强度高韧性水泥基复合材料,用于基础设施的修复

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摘要

Reduced performance in concrete infrastructures is mainly caused by the formation of cracks, which may arise due to deteriorating mechanisms during service life. In most cases, reduced performance calls for urgent repairs to the degraded section. Therefore, it is highly desirable to develop dimensionally stable, ductile repair materials that can attain adequately high strength in a limited amount of time, compensate for significant deformation due to mechanical and environmental loadings, and prevent early-age shrinkage cracks. In this paper, the performance of such a material (high-early-strength engineered cementitious composites, HES-ECC, with very low early-age shrinkage capacity) was investigated by studying mechanical properties and dimensional stability. Composites were produced with different water to cementitious materials and slag to Portland cement ratios. In order to enhance composite properties in terms of ductility and early-age shrinkage characteristics, saturated lightweight aggregates replaced sand in the mixtures. The experimental results show that the majority of HES-ECC mixtures developed in this study attained compressive strength values of more than 20.0 MPa and minimum flexural strength of 6.0 MPa within 6 h. Moreover, the HES-ECC mixtures exhibited strain-hardening behavior with strain capacities comparable to normal strength ECC, as well as substantially reduced autogenous shrinkage strain, both of which are unlikely to trigger the formation of cracks in tension at early ages. The integration of these conflicting parameters suggests that HES-ECC can easily meet the need for fast and durable repairs.
机译:混凝土基础设施性能下降的主要原因是裂缝的形成,这可能是由于使用寿命期间的机械性能下降而引起的。在大多数情况下,性能降低要求紧急维修降级部分。因此,非常需要开发尺寸稳定,可延展的修复材料,该材料可在有限的时间内获得足够高的强度,补偿由于机械和环境负荷引起的显着变形并防止早期收缩裂缝。在本文中,通过研究机械性能和尺寸稳定性,研究了这种材料(高强度工程胶结复合材料HES-ECC,具有很低的早期收缩能力)的性能。用不同的水与水泥质材料以及矿渣与波特兰水泥的比例生产复合材料。为了增强复合材料的延展性和早期收缩特性,饱和的轻质骨料代替了混合物中的沙子。实验结果表明,在本研究中开发的大多数HES-ECC混合物在6小时内达到了20.0 MPa以上的抗压强度值和6.0 MPa的最小抗弯强度。此外,HES-ECC混合物表现出应变硬化行为,其应变能力可与正常强度ECC相媲美,并且自发收缩应变大大降低,这两种可能性都不大可能触发早期拉伸时裂纹的形成。这些相互矛盾的参数的整合表明,HES-ECC可以轻松满足快速,持久维修的需求。

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