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Effect of sample preparation method on mechanical behaviour of fibre-reinforced sand

机译:样品制备方法对纤维增强沙子力学行为的影响

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It is well known that the mechanical behaviour of pure sand is dependent on the internal soil structure, which can be affected by sample preparation methods. For fibre-reinforced sand (FRS), the sample preparation methods influence not only the internal structure of sand skeleton but also the distribution of fibre orientation and sandfibre interaction. The effect of sample preparation methods on the mechanical behaviour of FRS has been investigated using comprehensive drained triaxial compression tests. The soil samples have been prepared by moist tamping (MT) and moist vibration (MV). There is a small difference in the stress-strain relationship of pure sand with different sample preparation methods. But the response of FRS is dramatically different. Under the same initial conditions of void ratio, confining pressure and fibre content, FRS prepared using the MV method shows 30?50% higher peak deviator stress and much less dilative response. A newly developed constitutive model is used to simulate the stress-strain relationship of FRS prepared using different methods.
机译:众所周知,纯砂的力学行为依赖于内部土壤结构,其可受到样品制备方法的影响。对于纤维增强砂(FRS),样品制备方法不仅影响砂骨架的内部结构,而且影响纤维取向和SandFibre相互作用的分布。采用样品制备方法对FRS的机械行为的影响已经采用全面排水三轴压缩试验研究。通过潮湿的夯实(MT)和湿振(MV)制备土壤样品。纯砂具有不同样品制备方法的应力 - 应变关系存在较小的差异。但FRS的响应显着不同。在空隙率的相同初始条件下,使用MV方法制备的抑制压力和纤维含量,升高峰值偏差应力和更小的扩张反应。新开发的本构体模型用于模拟使用不同方法制备的FRS的应力 - 应变关系。

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