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混凝土硫酸鹽腐蝕損傷的聲波與聲發射變化特征及機理

Ultrasonic velocity and acoustic emission properties of concrete eroded by sulfate and its damage mechanism

  • 摘要: 試驗模擬干濕循環作用下混凝土受10%(質量分數)硫酸鈉溶液侵蝕的腐蝕環境,測試和分析硫酸鹽不同侵蝕時期混凝土單軸壓縮試驗時波速和聲發射的變化特征.采用環境掃描電鏡和能譜儀進行微觀觀測并結合X射線衍射測試手段分析受蝕混凝土的損傷機理.結果表明:受侵蝕60 d和80 d的試件加載初期會有較明顯的壓密階段,試件受硫酸鹽侵蝕和干濕循環作用愈久,加載中波速急劇下降的突變點愈提前;受蝕40 d以上的試件加載中聲發射事件活躍區間較集中,在腐蝕產生的缺陷和薄弱位置容易出現應力集中和能量集中釋放,聲發射事件數量急劇上升的突變點提前.通過數學模型以聲發射累積振鈴計數為損傷變量建立損傷模型可以表征混凝土中環境腐蝕、荷載及損傷之間的作用關系.腐蝕階段鈣礬石與石膏的膨脹作用和硫酸鈉的結晶壓在試件內部形成微破損,受蝕混凝土表現出不同宏觀性能.

     

    Abstract: Simulation experiment was performed on the performance of concrete exposed to sulfate attack and dry-wet cycles. Changes in ultrasonic velocity and acoustic emission activities for concrete at different erosion periods were tested by uniaxial compression test. The damage mechanism was analyzed by environmental scanning electron microscopy (ESEM), energy-dispersive X-ray analysis (EDX) and X-ray diffraction (XRD). The results show that at the beginning of loading for concrete after 60 d and 80 d erosion, the specimen exhibits a significant compaction phase. The longer the concrete is exposed to sulfate attack and dry-wet cycles, the earlier the sudden drop in ultrasonic velocity occurs. For concrete after 40 d erosion, the active zone of acoustic emission is narrow during the loading process. The problems of stress concentration and a sudden release of energy tend to occur at the weak position caused by erosion in concrete, and a sharp increase in acoustic emission events appears in advance under sulfate attack. By means of a mathematical model, the damage model of concrete was established based on the cumulative ring-down count of acoustic emission as a variable, which reveals the relations of sulfate attack, load and damage for concrete in complex underground environments. During erosion time, the expansions caused by ettringite and gypsum and the swelling of sodium sulfate crystallization result in the evolution of micro-destruction, leading to the different macroscopic properties of corroded concrete.

     

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