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CONCRETE DETERIORATION MECHANISMS UNDER SIMULTANEOUS SULFATE ATTACK AND LOAD ACTION

机译:硫酸盐侵蚀和荷载作用下混凝土的破坏机理

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The deterioration mechanisms of sulfate attack of concrete under sustained loading and wet-dry cycling are investigated based upon micro-and macroobservations. The sulfate-ion concentration in the sodium sulfate test solution was 50000mg/L with the corresponding mass fraction being 6.9%. Three loading levels of 20%, 40% and 60% of ultimate flexural load were investigated and the load was mechanically applied to the specimens under four-point bending. Micro-observation was the determination of the sulfate-ion content profile using the modified barium sulfate gravimetric method (chemical titration method). Macro-observation was the measurement of the flexural strength change. Test results showed: the tensile stresses can increase diffusivity by initiating or developing microcracks; the compressive stresses are small compared with the concrete compressive strength, so the any effect on ion transport properties are not observed; under simultaneous sulfate attack and flexural loading, deterioration is aggravated as the loading level increases, and this is characterized on the macroscale by increased strength degradation.
机译:基于微观和宏观观测,研究了持续荷载和干湿循环下混凝土硫酸盐侵蚀的破坏机理。硫酸钠试验溶液中的硫酸根离子浓度为50000mg / L,相应的质量分数为6.9%。研究了极限弯曲载荷的20%,40%和60%的三种载荷水平,并在四点弯曲下将载荷机械地施加到样本上。微观观察是使用改良的硫酸钡重量法(化学滴定法)测定硫酸根离子含量分布。宏观观察是弯曲强度变化的量度。试验结果表明:拉应力可以通过引发或发展微裂纹来增加扩散性;与混凝土抗压强度相比,压缩应力较小,因此未观察到对离子传输性能的任何影响。在同时发生硫酸盐侵蚀和弯曲荷载的情况下,随着荷载水平的提高,劣化加剧,这在宏观上表现为强度劣化增加。

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