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碎石土路基填料壓實及滲透特性

Research on compaction and permeability characteristics of gravel soil roadbed filler

  • 摘要: 為揭示碎石土路基填料在壓實及滲透過程中的顆粒破碎、流失規律,對不同含石量及含水率的碎石土試樣進行擊實及擊實后的滲透試驗. 結果表明:對于碎石為硬巖、細顆粒為砂類土的碎石土試樣,在碎石質量分數(簡稱含石量)為60%時達到最大干密度;擊實破碎前后的粒徑分布具有良好的分形特征,分形維數D與干密度呈現正相關,破碎最優分形維數區間粗顆粒為2.23 ~ 2.25、細顆粒為2.43 ~ 2.45;建立了分形維數D與含石量和含水率的關系式可以對分形維數D進行預測并進一步估計壓實效果;破碎率Bg與分形維數D也有良好的線性關系,含石量不超過60%時,粗、細顆粒的分形維數D均隨顆粒破碎率Bg的增加而增加;滲透侵蝕對分形維數D的影響受含石量的影響較大,60%含石量時,分形維數差值隨含水率的增大先減小后增大,與滲透系數的變化趨勢相同. 含石量和含水率是影響顆粒破碎、流失的兩個重要因素,但相對于含水率而言,含石量對顆粒破碎、流失的影響更加顯著,分形維數D與各配比試樣的擊實、滲透試驗結果的相關性良好,能夠較好地反映碎石土試樣的壓實及滲透特性,可進一步揭示碎石土路基的壓實機理,也可為路基工程施工提供參考.

     

    Abstract: To elucidate the rules of particle crushing and loss of gravel soil subgrade filler during compaction and penetration, we performed compaction and permeability tests of gravel soil samples with different stone and moisture contents; moreover, crushing condition and fractal analysis were also performed on the test results. The results reveal that the best compaction effect is achieved when the stone content is 60% for gravel soil samples with hard rocks and fine particles as sandy soil and optimal moisture content is 8%. With the exception of the 70% stone content, the permeability coefficients of each ratio are similar, and the permeability coefficients all range from 10?2 to 10?3, indicating good permeability. The particle size distributions before and after compaction and crushing exhibit good fractal characteristics. The fractal dimension D is positively correlated with the dry density. Furthermore, the optimal fractal dimension D for crushing is 2.23–2.25 and 2.43–2.45 for coarse and fine particles, respectively. Relationships between the fractal dimension D and stone and moisture contents are established. Based on the relationship and optimal fractal dimension interval, the fractal dimension D can be predicted, and the compaction effect can be further estimated. There is also a good linear relationship between the crushing ratio Bg and fractal dimension D. When the stone content is no more than 60%, D of the coarse and fine particles increases with increasing Bg. The relationship between the fractal dimension D and penetration erosion shows that the smaller the difference between the fractal dimension before and after penetration, the smaller the effect of penetration on the erosion of gravel soil. The permeation erosion effect on D is highly affected by the stone content. When the stone content is 60%, the difference in fractal dimension decreases first and then increases as the moisture content increases, which is consistent with the changing trend of the permeability coefficient. Moreover, stone and moisture contents are two important factors that affect particle crushing and loss. However, stone content has a more significant impact on particle crushing and loss than moisture content. The fractal dimension D has a good correlation with the compaction and permeability test results of each proportion sample, which can better reflect the compaction and permeability characteristics of gravel soil samples. Thus, the results of this study can further reveal the compaction mechanism of gravel soil subgrade and provide a reference for subgrade construction.

     

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