Wang You-Bao, Zhao Chunfeng, Wu Yue
Department of Geotechnical Engineering, Tongji University, Shanghai 200092, China.
Laboratory of Geotechnical and Underground Engineering of Ministry of Education, Tongji University, Shanghai 200092, China.
Materials (Basel). 2020 Jul 8;13(14):3043. doi: 10.3390/ma13143043.
Grouted soil-concrete interfaces exist in bored piles with post-grouting in pile tip or sides and they have a substantial influence on pile skin friction. To study the effect of grouting volume on the shearing characteristics of the interface between cohesive soil and concrete piles with different roughness, grouting equipment and a direct shear apparatus were combined to carry out a total of 48 groups of direct shear tests on cohesive soil-concrete interfaces incorporating the grouting process. The test results showed that the shear behavior of the grouted cohesive soil-concrete interface was improved mainly because increasing the grouting volume and roughness increased the interfacial apparent cohesion. In contrast, increasing the grouting volume and roughness had no obvious increasing effects on the interfacial friction angle. Interfacial grouting contributed to the transition in the grouted cohesive soil from shrinkage to dilation: as the grouting volume increased, the shrinkage became weaker and the dilation became more obvious. The shear band exhibited a parabolic distribution rather than a uniform distribution along the shearing direction and that the shear band thickness was greater in the shearing direction, and it will become thicker with increasing grouting volume or roughness. The analysis can help to understand the shear characteristics of soil-pile interface in studying the vertical bearing properties of pile with post-grouting in tip or sides.
在桩端或桩侧后注浆的钻孔灌注桩中存在注浆土 - 混凝土界面,它们对桩侧摩阻力有重大影响。为研究注浆量对不同粗糙度的黏性土与混凝土桩界面剪切特性的影响,将注浆设备与直剪仪相结合,对包含注浆过程的黏性土 - 混凝土界面进行了共48组直剪试验。试验结果表明,注浆黏性土 - 混凝土界面的剪切性能得到改善,主要是因为增加注浆量和粗糙度提高了界面表观黏聚力。相比之下,增加注浆量和粗糙度对界面摩擦角没有明显的增大作用。界面注浆促使注浆黏性土从收缩向剪胀转变:随着注浆量增加,收缩变弱,剪胀更明显。剪切带沿剪切方向呈抛物线分布而非均匀分布,且剪切带厚度在剪切方向更大,并且会随着注浆量或粗糙度的增加而变厚。该分析有助于在研究桩端或桩侧后注浆桩的竖向承载特性时理解土 - 桩界面的剪切特性。