Luo Hao, Wang Xuan, Zhang Yu, Zhang Jiasheng
Department of Civil Engineering, Central South University, 68 Shaoshan South Road, Changsha 410075, China.
Materials (Basel). 2023 Mar 26;16(7):2636. doi: 10.3390/ma16072636.
Cement-treated sand reinforced with geogrids (CTSGs) has higher bending resistance and toughness than cement-treated sands (CTSs). To explore the reinforcement mechanism of geogrids with different stiffness and layers on CTSGs, three-point bending tests and numerical tests based on DEM are carried out on CTS specimens and CTSG specimens considering different reinforcement conditions. The results show that the geogrids and cement-treated sands have good cooperative working performance. Compared with CTSs, CTSG specimens show better ductility, flexural strength and toughness. The increase in geogrid stiffness and geogrid layers promote the reinforcement effect. On the meso-level, different geogrid stiffness and layers affect the crack propagation speed and distributions of cracks due to the anchorage action of geogrids, resulting in different reinforcement effects. In addition, the layers and stiffness of geogrids affect the evolution of the internal force chains of CTSG specimens. Both the increase in geogrid layers and decrease in geogrid stiffness reduce the average internal force of geogrids and weaken the anisotropy of the normal contact force of the specimens. The simulation results interpret the reinforcement mechanism of a CTSG specimen from crack development and internal force evolution, which can support a mesoscopic supplement to laboratory tests.
土工格栅增强水泥处理砂(CTSG)比水泥处理砂(CTS)具有更高的抗弯性和韧性。为探究不同刚度和层数的土工格栅对CTSG的增强机理,针对考虑不同增强条件的CTS试件和CTSG试件开展了三点弯曲试验及基于离散单元法(DEM)的数值试验。结果表明,土工格栅与水泥处理砂具有良好的协同工作性能。与CTS相比,CTSG试件表现出更好的延性、抗弯强度和韧性。土工格栅刚度和层数的增加促进了增强效果。在细观层面,由于土工格栅的锚固作用,不同的土工格栅刚度和层数会影响裂纹扩展速度和裂纹分布,从而产生不同的增强效果。此外,土工格栅的层数和刚度会影响CTSG试件内力链的演化。土工格栅层数的增加和刚度的降低均会减小土工格栅的平均内力,并削弱试件法向接触力的各向异性。模拟结果从裂纹发展和内力演化方面阐释了CTSG试件的增强机理,可为实验室试验提供细观层面的补充依据。