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Optimization of Unconfined Compressive Strength of Fine-grained Soils Modified with Polypropylene Fibers and Additive Materials

机译:聚丙烯纤维和添加材料改性细粒土的无侧限抗压强度的优化

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摘要

A number of studies have been conducted recently to investigate the influence of randomly oriented fibers on some engineering properties of cohesive and cohesionless soils. However, few studies have been carried out on fine-grained soils modified with discrete fiber inclusions and additive materials. This experimental study was performed to investigate the effect of randomly distributed Polypropylene fibers (PP) and some additive materials [e.g., Borogypsum (BG), Fly Ash (FA) and Cement (C)] on unconfined compressive strength of a fine-grained soil cured for 7,14 and 28 days. The Taguchi method was applied to the experiments and a standard L9 Orthogonal Array (OA) with four factors and three levels were chosen. A series of unconfined compression tests (7,14 and 28 days) were conducted on each specimen. 0-20% BG, 0-20% FA, 0-0.25% PP and 0-3% of C by total dry weight of mixture were used in the preparation of specimens. Experimental results showed that the most effective material for increasing the unconfined compressive strength of the samples was poly propylene fiber. The values of unconfined compressive strength for curing times of 7, 14 and 28 days in optimum conditions were 0.94 MPa, 1.25 MPa and 1.95 MPa, respectively.
机译:最近已经进行了许多研究,以研究随机取向的纤维对粘性和非粘性土壤的某些工程特性的影响。但是,对于用离散纤维夹杂物和添加材料改性的细粒土壤,进行的研究很少。进行这项实验研究是为了研究随机分布的聚丙烯纤维(PP)和一些添加材料[例如硼石膏(BG),粉煤灰(FA)和水泥(C)]对细粒土的无侧限抗压强度的影响。治愈了7,14和28天。 Taguchi方法用于实验,并选择具有四个因子和三个级别的标准L9正交阵列(OA)。对每个样本进行了一系列的无限制压缩测试(7、14和28天)。以混合物总干重计,使用0-20%BG,0-20%FA,0-0.25%PP和0-3%C来制备样品。实验结果表明,增加样品无侧限抗压强度的最有效材料是聚丙烯纤维。在最佳条件下,固化时间为7、14和28天的无侧限抗压强度分别为0.94 MPa,1.25 MPa和1.95 MPa。

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