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Stress-stain behavior, elastic modulus, and toughness of the soilcrete modified with powder polymers

机译:用粉末聚合物改性土壤的应力 - 染色行为,弹性模量和韧性

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This article discusses the effect of two types of polymer on the stress-strain (sigma-epsilon) behavior, elastic modulus and total toughness of soilcrete. Soilcrete properties modified with two types of polymer content up to 0.20% (% wt.) were tested. The sigma-epsilon behavior of modified soilcrete with polymeric admixtures was examined for curing periods up to 28 days. Additional polymer content maintains the flowability of soilcrete with the range of 105 to 110% as recommended by ASTM C109, and the water/cement ratio (w/c) decreased by 14.5 to 25.5% with the addition of polymer. The compression strength of soilcrete increased by 72 to 153% when 0.20% of the polymer was added to the soilcrete, and therefore the compression toughness was increased with increasing polymer content. Modifying the soilcrete with polymer content increased the initial elastic modulus (Ei) of soilcrete by 55% to 195% according to polymeric admixture types, curing age (t), w/c, and polymeric admixture percent. With increasing polymer content, the soilcrete samples become brittle, and the strain at failure is reduced. Adding polymeric admixture creates an amorphous gel that fills the spaces between cement particles with working fibers net or meshes covering the sand particles, which cause a reduction in the voids, porosity and increasing the density of the soilcrete; subsequently, the mechanical properties significantly increased. The nonlinear Vipulanandan p-q model was employed to predict the sigma-epsilon relationship of the modified soilcrete with polymer and was compared with the beta model prediction. Statistical assessment tools were used to evaluate the compressive stress-strain models and nonlinear approaches to predict the compressive strength and the modulus of elasticity as a function of water/cement ratio, curing age, and amount of the polymers. (C) 2021 Elsevier Ltd. All rights reserved.
机译:本文讨论了两种聚合物对菌株(Sigma-epsilon)行为,弹性模量和土壤的总韧性的影响。用两种类型的聚合物含量改性的土壤滤脉性质高达0.20%(%wt。)。检查具有聚合物混合物的改性土壤的Sigma-Epsilon行为,用于固化期最多28天。另外的聚合物含量保持粉碎的流动性,通过ASTM C109推荐的105%至110%,水/水泥比(W / C)随着添加聚合物而降低14.5至25.5%。当将0.20%的聚合物加入到土壤中,土壤的压缩强度提高了72%至153%,因此随着聚合物含量的增加而增加压缩韧性。根据聚合物混合物类型,固化年龄(T),W / C和聚合物混合物百分比,用聚合物含量改变聚合物含量的初始弹性模量(ei)的初始弹性模量(ei)以55%至195%。随着聚合物含量的增加,土壤晶体样品变脆,并且失效时的菌株减少。添加聚合物混合物产生无定形凝胶,该无定形凝胶填充水泥颗粒之间的空间与覆盖砂颗粒的工作纤维网或网状物,这导致空隙,孔隙率和增加土壤密度的减少;随后,机械性能显着增加。使用非线性vipulanandan p-q模型来预测改性的土壤与聚合物的Sigma-ε-与β模型预测进行了比较。统计评估工具用于评估压缩应力 - 应变模型和非线性方法,以预测抗压强度和弹性模量作为水/水泥比,固化年龄和聚合物的量。 (c)2021 elestvier有限公司保留所有权利。

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