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首页> 外文期刊>Advances in civil engineering >Study on Hygroscopic Swelling and Dehumidification Cracking Characteristics of Expansive Soil under Acid Rain and Cyclic Drying-Wetting
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Study on Hygroscopic Swelling and Dehumidification Cracking Characteristics of Expansive Soil under Acid Rain and Cyclic Drying-Wetting

机译:耐旱涝下膨胀土吸湿肿胀及除湿开裂特性的研究及循环干燥湿润

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In this study, to reveal the swelling and cracking characteristics of expansive soil subjected to cyclic drying-wetting of acid rain, the effects of acid rain and cyclic drying-wetting on the swelling deformation of expansive soil were studied by using the load-free swelling rate test. Afterward, a high-definition digital camera was used to capture the crack development images of the sample during the dehumidification process under cyclic drying-wetting of acid rain. Furthermore, the changes of the microstructure and mineral composition of the expansive soil after cyclic drying-wetting of acid rain were analyzed by using the scanning electron microscopy (SEM) and X-ray diffraction (XRD) tests. Finally, the effect mechanisms of acid rain and cyclic drying-wetting on the swelling deformation and crack development of the expansive soil were discussed. The results indicate that acid rain has a positive effect on the swelling deformation and crack development of the expansive soil. The effect is greater with a stronger acidity of rainfall. Moreover, the combined action of acid rain and cyclic drying-wetting can promote the swelling deformation and crack development of the sample more notably. The swelling rate of the sample increased most significantly during the first two-time cyclic drying-wetting. The measured swelling rates at pH?=?3 and 5 are 23.7% and 20.6%, respectively, which are higher than the swelling rates of 19.0% at pH?=?7. The humidity of samples is 17–18% after the first-time drying-wetting cycle. The crack area ratios ( M f ) of the samples with pH values of 5 and 3 are, respectively, increased by 11.0% and 69.1%; the average crack width of the sample increases by 32.3% and 93.3%, respectively, compared with pH values of 7. After the fourth-time drying-wetting cycle, M f and the average crack width of the samples under the rainwater environment of three pH values increase greatly, but the difference of M f among them became unapparent. In addition, the microscopic test results show that acid rain can corrode the binding materials (e.g., SiO 2 , Al 2 O 3 , K 2 O, MgO, and CaO) in the expansive soil. The erosion of the binding minerals weakens the structural connection strength, resulting in continuous increases in both size and number of microvoids. Under the superimposed influence of cyclic drying-wetting, the above changes are even more dramatic. Macroscopically, the swelling deformation of expansive soil increases and the cracks develop rapidly.
机译:在这项研究中,为了揭示膨胀土的膨胀和开裂特性对酸雨的循环干燥润湿,通过使用无负载肿胀研究了酸雨和环状干燥对膨胀土的膨胀变形的影响速率测试。之后,在酸雨循环干燥润湿下的除湿过程中,使用高清数码相机捕获样品的裂纹开发图像。此外,通过使用扫描电子显微镜(SEM)和X射线衍射(XRD)试验,分析了酸雨循环干燥后膨胀土的微观结构和矿物组成的变化。最后,探讨了酸雨和循环干燥湿润对膨胀土的肿胀变形和裂纹开发的影响。结果表明,酸雨对膨胀土的肿胀变形和裂纹发育具有积极影响。这种效果更大,降雨量较强。此外,酸性雨和循环干燥湿润的组合作用可以促进样品的肿胀变形和裂纹开发。在前两次循环干燥润湿过程中,样品的膨胀率最显着增加。 pH =β3和5的测量溶胀率分别为23.7%和20.6%,其高于pH值的溶胀率为19.0%,=Δ7。在第一次干燥润湿循环后,样品的湿度为17-18%。具有5和3的样品的样品的裂缝面积比(M f)分别增加11.0%和69.1%;样品的平均裂缝宽度分别增加了32.3%和93.3%,与pH值相比。在第四次干燥润湿循环,M f和三个雨水环境下的样品的平均裂缝宽度pH值大大增加,但它们中的M F的差异变得不公平。此外,微观测试结果表明,酸性雨可以在膨胀土中腐蚀粘合材料(例如,SiO 2,Al 2 O 3,K 2 O,MgO和CaO)。结合矿物质的腐蚀削弱了结构连接强度,导致尺寸和微管尺寸的连续增加。在循环干燥润湿的叠加影响下,上述变化更加戏剧性。宏观上,膨胀土壤的膨胀变形增加,裂缝迅速发展。

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