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鐵尾礦粉混凝土在荷載與硫酸鹽干濕循環耦合作用下的性能劣化機理

Mechanism of performance deterioration of iron tailing powder concrete under the coupling effect of load and sulfate dry–wet cycle

  • 摘要: 鐵尾礦粉作為礦物摻合料應用于混凝土有助于固廢高值化利用和節能減排,而關于鐵尾礦粉混凝土抗硫酸鹽侵蝕性能的研究,大多只考慮了單一條件或者加速條件環境,其在多種環境耦合下的劣化特征尚未得到探究. 本文將鐵尾礦粉作為礦物摻合料應用于混凝土中,以相對動彈性模量、質量損失率為性能指標,研究荷載–硫酸鹽干濕循環耦合作用下鐵尾礦粉混凝土劣化過程,探究鐵尾礦粉摻量和荷載率對鐵尾礦粉混凝土內部劣化的影響,結合掃描電鏡(SEM)、X-ray衍射分析(XRD)、壓汞(MIP)等微觀手段揭示鐵尾礦粉混凝土在耦合作用下損傷劣化機理. 結果表明:適量鐵尾礦粉的摻入有利于其與礦粉的協同水化作用,提高混凝土水化程度和基體密實度,減少硫酸根離子傳輸路徑,提高混凝土抗硫酸鹽侵蝕能力;荷載的施加使試塊內部微裂紋寬度和數量增加,為硫酸根離子的進入提供更多滲透路徑,加速鐵尾礦粉混凝土損傷劣化過程;耦合作用使得鐵尾礦粉混凝土內部損傷不斷累積,在微觀上表現為結構的疏松和裂縫的衍生擴展,在宏觀上表現為力學性能的衰減和整體結構完整性的下降.

     

    Abstract: The application of iron tailing powder to concrete as a mineral admixture promotes high-value use of solid waste and energy saving and emission reduction. However, most studies on the durability of iron tailing powder concrete only consider single conditions or accelerated conditions, and its deterioration characteristics under multiple environmental coupling remain unexplored. In this paper, an iron tailing powder admixture is applied to concrete. The relative dynamic elastic modulus and mass loss rate are used as performance indexes to study the deterioration process of iron tailing powder concrete under load–wet–cycling–sulfate coupling and to explore the influence of iron tailing powder content and load rate on the internal deterioration of iron tailing powder concrete. Scanning electron microscopy, X-ray diffraction analysis, and mercury injection revealed the damage and deterioration mechanism of iron tail powder concrete under coupling action. The results show that the proper addition of iron tailings benefits the synergistic hydration between iron tailings and slag powder to achieve the synergistic and complementary effect and improve the hydration degree of concrete. As a composite admixture, the mixture of the two considerably impacts the performance of concrete. The degree of damage and deterioration of the iron tailing concrete decreases and then increases with increasing iron tailing content. The sulfate corrosion resistance of concrete is optimal when the dosage is 50%. Adding a proper amount of iron tailing powder improves the compactness of iron tailing powder concrete, reduces the transport path of sulfate ions, improves the tensile strength of concrete, delays the appearance of microcracks caused by expansion products, and thus improves the corrosion resistance of iron tailing powder concrete. Under the coupled action, the expansion stress of ettringite and gypsum and the crystallization pressure caused by sulfate continuously increase the internal cracks of iron tailing powder concrete. Load application increases the width and number of microcracks in the test block. When the load rate exceeds 40%, the load accelerates the elastic deformation of cracks, reduces the effective bearing area of concrete, reduces the bearing capacity, and destabilizes the internal structure. At the same time, continuous calcium dissolution formed more channels inside the concrete and provided favorable conditions for infiltration and erosion by sulfate ions. The repeated dry–wet cycle caused the internal damage of the concrete to accumulate repeatedly, and the specimen was destroyed after reaching the ultimate strength of the concrete.

     

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