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Assessment of the Mechanical Properties of Sisal Fiber-Reinforced Silty Clay Using Triaxial Shear Tests

机译:使用三轴剪切试验评估Sisal纤维增强粉质粘土的力学性能

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Fiber reinforcement is widely used in construction engineering to improve the mechanical properties of soil because it increases the soil’s strength and improves the soil’s mechanical properties. However, the mechanical properties of fiber-reinforced soils remain controversial. The present study investigated the mechanical properties of silty clay reinforced with discrete, randomly distributed sisal fibers using triaxial shear tests. The sisal fibers were cut to different lengths, randomly mixed with silty clay in varying percentages, and compacted to the maximum dry density at the optimum moisture content. The results indicate that with a fiber length of 10 mm and content of 1.0%, sisal fiber-reinforced silty clay is 20% stronger than nonreinforced silty clay. The fiber-reinforced silty clay exhibited crack fracture and surface shear fracture failure modes, implying that sisal fiber is a good earth reinforcement material with potential applications in civil engineering, dam foundation, roadbed engineering, and ground treatment.
机译:纤维增强件广泛用于建筑工程,以改善土壤的机械性能,因为它增加了土壤的强度并提高了土壤的机械性能。然而,纤维增强土壤的机械性能仍然存在争议。本研究研究了使用三轴剪切试验用离散,随机分布的Sisal纤维加固的粉质粘土的机械性能。将Sisal纤维切割成不同的长度,以不同的百分比随机混合,与百分比的百分比混合,并压实在最佳水分含量下的最大干密度。结果表明,纤维长度为10毫米,含量为1.0%,Sisal纤维增强粉质粘土比不再是非重新裂解的粉质粘土为20%。纤维增强的粉质粘土表现出裂缝骨折和表面剪切断裂衰竭模式,暗示Sisal纤维是一种良好的地球加强材料,具有土木工程,大坝基金会,路基工程和地面治疗的潜在应用。

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