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首页> 外文期刊>Journal of structural engineering >Experimental Behavior of Large Reinforced Concrete Specimen with Heavy ASR and DEF Deterioration
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Experimental Behavior of Large Reinforced Concrete Specimen with Heavy ASR and DEF Deterioration

机译:重型ASR和DEF劣化的大型钢筋混凝土试样的实验行为

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摘要

Slight and moderate amounts of deterioration caused by alkali silica reaction (ASR)/delayed ettringite formation (DEF)-induced expansion in reinforced concrete specimens do not markedly or detrimentally affect its structural load-carrying capacity. However, effects of severe (late-stage) ASR/DEF deterioration on the load-carrying capacity of structures is not known. A large-scale reinforced concrete C-beam specimen with heavy ASR/DEF deterioration is load tested in the laboratory. A comparison of the force-deformation results of the severely deteriorated specimen with the undamaged control specimen, and slightly and moderately ASR/DEF-deteriorated specimens, shows that there is no reduction in the load-carrying capacity. The mode of failure of the specimen is a brittle joint-shear failure similar to the other C-beam specimens. However, a reduction in the ductility of the heavily deteriorated specimen is observed. Postfailure examination shows a significant degree of corrosion in the longitudinal and transverse reinforcement. Significant bulging and complete debonding of the lapped transverse U-bars in the specimen knee-joint caused considerable loss in confinement of the softened concrete, resulting in an embrittled performance and sudden early loss of load in the heavily damaged specimen. It is not known how further corrosion in conjunction with severe ASR/DEF deterioration could affect the future behavior of the structure.
机译:由碱硅石反应(ASR)/钙矾石形成延迟(DEF)引起的钢筋混凝土试样膨胀引起的轻微和中等程度的劣化不会显着或有害地影响其结构承载能力。但是,严重的(后期)ASR / DEF劣化对结构的承载能力的影响尚不清楚。带有严重ASR / DEF劣化的大型钢筋混凝土C型钢试样在实验室进行了载荷测试。将严重劣化的样本与未损坏的对照样本以及ASR / DEF样本轻微和中度恶化的样本的力-变形结果进行比较,结果表明承载能力并未降低。样品的破坏模式是类似于其他C型钢样品的脆性接头剪切破坏。然而,观察到严重劣化的样品的延展性降低。失效后检查表明,纵向和横向钢筋的腐蚀程度明显。样品膝关节中搭接的横向U形筋明显鼓胀和完全脱粘,导致软化混凝土的密闭性大大降低,从而导致性能受损,严重受损的样品突然突然失去载荷。还不知道进一步的腐蚀以及严重的ASR / DEF劣化如何影响结构的未来性能。

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