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논문 기본 정보

자료유형
학술저널
저자정보
(Nanjing Forestry University) (Nanjing Forestry University) (Nanjing Forestry University) (Nanjing Forestry University) (Southeast University) (Jiangsu Testing Center for Quality of Construction Engineering)
저널정보
한국콘크리트학회 International Journal of Concrete Structures and Materials International Journal of Concrete Structures and Materials Vol.14 No.5
발행연도
수록면
829 - 848 (20page)

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초록· 키워드

The previous researches on the degradation process of concrete under sulfate attack mainly focus on non-damaged concrete. It may lead to an excessive evaluation of the durability of the structure, which is detrimental to the safety of the structure. In this paper, three different damage degrees of concrete specimens with non-damaged (D<SUB>0</SUB>) and initial damage of 10% (D₁) and 20% (D₂) were prefabricated and subjected to sulfate attack and wetting–drying cycles. With the increase of sulfate attack cycles (0, 30, 60, 90, 120, 150 cycles), the changes in mass loss, relative dynamic modulus of elasticity, and the stress–strain curve were studied. The results show that the mass of the D<SUB>0</SUB> specimen had been increasing continuously before 150 sulfate attack cycles. The mass of D₁ and D₂ had been increasing before 60 cycles, and decreasing after 60 cycles. At 150 cycles, the mass loss of D<SUB>0</SUB>, D₁, D₂ were − 1.054%, 0.29% and 3.20%, respectively. The relative dynamic modulus of elasticity (RDME) of D<SUB>0</SUB> specimen increases continuously before 90 sulfate attack cycles. After 90 cycles, the RDME gradually decreases. However, for D₁ and D₂ specimens, the RDME began to decrease after 30 cycles. The damage degree has an obvious influence on the compressive strength and elastic modulus. For the D<SUB>0</SUB> specimen, the compressive strength and elastic modulus increased continuously before 90 cycles and decreased after 90 cycles. The compressive strength and elastic modulus of D₁ and D₂ specimens began to decrease after 30 cycles. The stress–strain curves of concrete with different initial damage degrees were established, and the fitting results were good. Finally, based on the analysis of experimental data, the degradation mechanism of concrete with initial damage under the sulfate wetting–drying cycle was discussed.
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목차

  1. Abstract
  2. 1. Introduction
  3. 2. Materials and Methods
  4. 3. Test Results and Discussion
  5. 4. Uniaxial Compression Test
  6. 5. Conclusions
  7. References

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UCI(KEPA) : I410-ECN-0101-2020-532-001290732