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首页> 外文期刊>Cement & concrete composites >Chloride diffusion of shotcrete lining structure subjected to nitric acid, salt-frost degradation, and bending stress in marine environment
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Chloride diffusion of shotcrete lining structure subjected to nitric acid, salt-frost degradation, and bending stress in marine environment

机译:氯化物衬里结构的氯化物扩散经受硝酸,盐霜降解和海洋环境弯曲应力

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The chloride diffusion of shotcrete lining at the middle and passageway of submarine tunnels subjected to chloride attack, combined action of NxOy from automobile exhaust and chloride attack, salt-frost degradation, and surrounding rock stress was investigated using 3.5%NaCl and HNO3 + 3.5%NaCl solution immersion method, accelerated salt-freezing-thawing method, and spring four-point bending loads method, respectively. Chloride content in shotcrete was measured using solid-liquid extraction and potential method. Meanwhile, the influence of chloride diffusion on nitric acid attack, salt-frost deterioration, bending stress, and shotcrete mixture parameters were analyzed. Nitric acid attack, salt-frost degradation and bending stress accelerated chloride migrate into shotcrete. When immersed in NaCl and HNO3 + NaCl solution, shotcrete with low water-binder ratio and high steel fiber content had lower chloride content. With the increase in fly ash replacement, the chloride content decreased initially and then increased rapidly. Under salt-frost degradation, the shotcrete with low water-binder ratio and fly ash replacement had better chloride diffusion resistance. The distribution of chloride content in concrete conformed to Fick's second law. The chloride diffusion model was established based on the temperature of environmental and humidity of concrete, exposure time to solution, mixture parameters of shotcrete, nitric acid attack, salt-frost degradation, and bending stress.
机译:采用3.5%NaCl和HNO3和HNO3 + 3.5%,研究了从氯化物攻击的潜艇隧道中间和通道的氯化衬里隧道中间和通道的氯化物衬里的氯化物扩散,NXOY的组合作用,盐霜降解和周围的岩石应力。 NaCl溶液浸渍法,加速盐冷冻解介法,以及弹簧四点弯曲载荷方法。使用固液萃取和潜在方法测量喷丸凝集中的氯化物含量。同时,分析了氯化物扩散对硝酸攻击,盐霜劣化,弯曲应力和吸尘器混合参数的影响。硝酸攻击,盐霜降解和弯曲应力加速氯化物迁移到喷射中。当浸入NaCl和HNO3 + NaCl溶液中时,具有低水 - 粘合剂比和高钢纤维含量的吸痰含量较低。随着粉煤灰更换的增加,氯化物含量最初降低,然后迅速增加。在盐霜降解下,水 - 粘合剂比和粉煤灰置换率低的喷射晶体具有更好的氯化物扩散抗性。混凝土中氯化物含量的分布符合Fick的第二法。氯化物扩散模型是基于混凝土环境和湿度的温度,溶液的温度,溶液,硝酸侵蚀,盐霜劣化和弯曲应力的混合参数。

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