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Interface shear strength properties of geogrid-reinforced steel slags using a large-scale direct shear testing apparatus

机译:使用大规模直剪检测装置的地质钢化钢渣的接口剪切强度特性

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This research evaluates the shear strength properties of unreinforced and geogrid-reinforced ladle furnace slag (LFS), electric arc furnace slag (EAFS) and a blend comprising 50% LFS and 50% EAFS (LFS50+EAFS50) using the large direct shear testing apparatus (DST). The large DST results of unreinforced steel slags indicated that LFS had the lowest shear stress ratio at the peak shear strength among all samples, while LFS50+EAFS50 samples (both unreinforced and reinforced) demonstrated the highest shear stress ratio amongst the tested samples. A higher apparent cohesion value was achieved with the inclusion of biaxial geogrid in LFS and EAFS samples as compared to the triaxial geogrid interface. The observed behavior can be attributed to the larger aperture size of the biaxial geogrid compared to the triaxial geogrid leaving more void planar space for a direct interaction between slag particles. In contrast, the apparent cohesion of LFS50+EAFS50 without a geogrid interface was high and did not change significantly with the insertion of geogrid. Given, the range of internal friction angles for ordinary soils, studied slag by-products achieved internal friction angles in excess of 59 degrees (with no geogrid interface) and these significant values proved highly beneficial application for these waste materials in pavement construction.
机译:该研究评估了未原始的和土工格栅钢筋炉渣(LFS),电弧炉炉渣(EAF)的剪切强度特性,并使用大型直接剪切检测装置包含50%LFS和50%EAFS(LFS50 + EAFS50)的混合物(DST)。未原始的钢渣的大DST结果表明,LFS在所有样品中的峰值剪切强度处具有最低的剪切应力比,而LFS50 + EAFS50样品(均未成功和加强)在测试的样品中显示出最高的剪切应力比。与三轴地质格栅界面相比,在LFS和EAFS样品中包含双轴土工格栅,实现了更高的表观内聚力。与三轴地质格栅相比,观察到的行为可归因于双轴地质格栅的较大孔径大小,留下更多空隙平面空间以进行渣粒之间的直接相互作用。相比之下,没有地质格栅界面的LFS50 + EAFS50的表观凝聚力很高,插入土工格栅没有显着变化。给定,用于普通土壤的内部摩擦角的范围,研究了渣副产品的内部摩擦角超过59度(没有地质界面),这些显着的值证明了这些废料在路面结构中的高益处应用。

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