首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Effect of Rubber Crumbs on the Cyclic Behavior of Steel Furnace Slag and Coal Wash Mixtures
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Effect of Rubber Crumbs on the Cyclic Behavior of Steel Furnace Slag and Coal Wash Mixtures

机译:橡胶屑对钢渣和洗煤混合物循环性能的影响

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摘要

The practical application of waste materials such as steel furnace slag (SFS) and coal wash (CW) is becoming more prevalent in many geotechnical projects. While adding rubber crumbs (RCs) from recycled tires into mixtures of SFS and CW not only solves the problem of large stockpiles of waste tires, it also can provide an energy-absorbing medium that will reduce vibration and prevent track degradation. Thus, the engineering insight into the effect that rubber crumbs have on the dynamic behavior of SFS + CW + RC mixtures is in urgent demand. In this study the influence that RC contents and confining pressures have on the deformation, resilient modulus, damping ratio, and shear modulus was investigated by cyclic triaxial tests. Test results reveal that with the inclusion of RC, the axial strain, volumetric strain, damping ratio, and energy-absorbing capacity of the SFS + CW + RC mixture increase, while its resilient modulus and shear modulus decrease. Based on these properties, an amount of 10% RC is recommended as an optimal blended mix to be used as railway subballast. A three-dimensional (3D) empirical model of the relationship between the maximum axial strain, volumetric strain, and resilient modulus with RC contents and the effective confining pressure was developed, and the energy-absorbing capacity of these waste mixtures has also been analyzed for practical purposes based on their comprehensive parameters.
机译:在许多岩土工程中,废料的实际应用(例如钢炉渣(SFS)和洗煤(CW))变得越来越普遍。在将回收轮胎的橡胶屑(RCs)添加到SFS和CW的混合物中时,不仅解决了废轮胎的大量库存问题,而且还可以提供一种能量吸收介质,从而减少振动并防止履带退化。因此,迫切需要对橡胶屑对SFS + CW + RC混合物的动态行为产生影响的工程洞察力。在这项研究中,通过循环三轴试验研究了RC含量和围压对变形,弹性模量,阻尼比和剪切模量的影响。测试结果表明,随着RC的加入,SFS + CW + RC混合物的轴向应变,体积应变,阻尼比和能量吸收能力增加,而弹性模量和剪切模量降低。基于这些特性,建议将10%的RC用作铁路子镇流器的最佳混合料。建立了最大轴向应变,体积应变和弹性模量与RC含量和有效围压之间关系的三维(3D)经验模型,并且还分析了这些废物混合物的能量吸收能力基于其综合参数的实际用途。

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