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Influence of free water content on the compressive mechanical behaviour of cement mortar under high strain rate

机译:自由应变下高含水率对水泥砂浆抗压力学性能的影响

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The effect of free water content upon the compressive mechanical behaviour of cement mortar under high loading rate was studied. The uniaxial rapid compressive loading testing of a total of 30 specimens, nominally 37 mm in diameter and 18.5 mm in height, with five different saturations (0%, 25%, 50%, 75% and 100%, respectively) were executed in this paper. The technique 'Split Hopkinson pressure bar' (SHPB) was used. The impact velocity was 10 m/s with the corresponding strain rate as 10~2/s. Water-cement ratio of 0.5 was used. The compressive behaviour of the materials was measured in terms of the maximum stress, Young's modulus, critical strain at maximum stress and ultimate strain at failure. The data obtained from test indicates that the similarity exists in the shape of strain-stress curves of cement mortars with different water content, the upward section of the stress-strain curve shows bilinear characteristics, while the descending stage (softening state) is almost linear. The dynamic compressive strength of cement mortar increased with the decreasing of water content, the dynamic compressive strength of the saturated specimens was 23% lower than that of the totally dry specimens. With an increase in water content, the Young's modulus first increases and then decreases, the Young's modulus of the saturated specimens was 23% lower than that of the totally dry specimens. No significant changes occurred in the critical and ultimate strain value as the water content is changed.
机译:研究了高含水率下游离水含量对水泥砂浆抗压力学性能的影响。在此总共对30个标本进行了单轴快速压缩载荷测试,标称直径为37 mm,高度为18.5 mm,具有五个不同的饱和度(分别为0%,25%,50%,75%和100%)。纸。使用了“ Split Hopkinson压力棒”(SHPB)技术。冲击速度为10 m / s,对应的应变率为10〜2 / s。水灰比为0.5。根据最大应力,杨氏模量,最大应力下的临界应变和破坏时的极限应变来测量材料的压缩行为。试验数据表明,不同含水量的水泥砂浆的应变-应力曲线形状相似,应力-应变曲线的上半部呈双线性特征,而下降阶段(软化态)几乎呈线性。 。水泥砂浆的动态抗压强度随着含水量的减少而增加,饱和试样的动态抗压强度比完全干燥的试样低23%。随着含水量的增加,杨氏模量先增加然后降低,饱和试样的杨氏模量比完全干燥的试样低23%。随着含水量的变化,临界应变值和极限应变值没有发生重大变化。

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