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首页> 外文期刊>Advances in civil engineering >Investigation on the Effects of Prefabricated Crack and Strain Rate on Uniaxial Compressive Properties of Frozen Silty Soil
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Investigation on the Effects of Prefabricated Crack and Strain Rate on Uniaxial Compressive Properties of Frozen Silty Soil

机译:预制裂纹裂缝和应变率对冷冻粉状土壤单轴压缩性能影响的研究

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摘要

To investigate the uniaxial compressive strength and deformation properties of frozen silty soil with prefabricated crack under various strain rates, the static uniaxial compressive tests were conducted for frozen silty soil using three kinds of binder materials to select the suitable prefabricated crack manufacturing method. Afterward, the static and dynamic stress-strain curves of frozen silty soil with different prefabricated crack numbers were obtained based on static and splitting Hopkinson pressure bar (SHPB) tests. In addition, the high-speed camera was employed to record the fracturing process of frozen silty soil under impact loads. Results indicated that the frozen silty soil specimens with no binder showed higher static strength compared with other two binder materials (plaster and Vaseline). The strength growth rate of frozen silty soil showed three-stage (fast-slow-rapid) change characteristics. The peak strain of frozen silty soil under static loads scope was higher compared with that under dynamic loads, while its dynamic peak strain with various prefabricated crack numbers was remarkably rate-dependent. The absorbed energy density of frozen silty soil was subject to a negative (positive) relationship with the prefabricated crack numbers (strain rate). The dominated crack of intact frozen silty soil specimen finally presented Y-shaped shear failure. However, tensile cracks parallel to stress wave propagation direction were observed for the frozen silty soil specimen with prefabricated crack.
机译:为了研究不同应变率的预制裂缝的单轴抗压强度和冻结性能,使用三种粘合剂材料对冷冻粉状土壤进行静态单轴压缩试验,以选择合适的预制裂纹制造方法。之后,基于静态和分裂的Hopkinson压力棒(SHPB)测试获得了具有不同预制裂缝数的冷冻粉状土壤的静态和动态应力 - 应变曲线。此外,采用高速相机在冲击载荷下记录冷冻粉状土壤的压裂过程。结果表明,与其他两种粘合剂材料(膏药和凡士林)相比,没有粘合剂的冷冻粉状土壤样品显示出更高的静力量。冷冻粉质土壤的强度生长速率显示三阶段(快速缓慢)的变化特征。与动态载荷相比,静载荷范围下冷冻粉状土壤的峰值应变较高,而具有各种预制裂缝数的动态峰值应变非常依赖。冷冻粉状土壤的吸收能量密度与预制裂缝数(应变率)进行负(阳性)关系。完整的冷冻粉状土壤标本的主导裂缝最终呈现Y形剪切失效。然而,对于具有预制裂缝的冷冻粉状土壤标本,观察到平行于应力波传播方向的拉伸裂缝。

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