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Performance Evaluation of Pavement Geomaterials Stabilized with Pond Ash and Brick Kiln Dust Using Advanced Cyclic Triaxial Testing

机译:用高级循环三轴试验评估粉煤灰和砖窑粉尘稳定的路面土工材料的性能

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摘要

An increase in the generation of industrial waste materials such as pond ash and brick kiln dust represents a serious threat to the earth’s environment. The waste materials have novel characteristics and therefore their physical, chemical, mineralogical, morphological, mechanical, and toxicity characteristics were determined so that these materials can be incorporated as construction materials based on technical and environmental considerations. The purpose of this study is to utilize the wastes in the stabilization of clay geomaterial to outperform existing problems of inadequate strength and stiffness of the subgrade layer in flexible pavements. Mixtures of geomaterials, containing pond ash, brick kiln dust, and their combination were prepared and important engineering characteristics such as the plasticity, compaction, and strength of the mixtures were examined. The measurement of response to dynamic loading is a pre-condition for the accurate characterization of geomaterials used in pavement construction. Using advanced cyclic triaxial testing, this study evaluates the performance of pond ash and brick kiln dust in increasing the stiffness of the geomaterial under cyclic loading. To stimulate the worst field conditions, the stiffness and strength tests were performed under standard and four-day water-soaked conditions. The implementation of several stress-dependent models for the prediction of stiffness was examined. Pond ash and brick kiln dust were found to be effective in increasing the stiffness and strength of the geomaterial. The wastes were the most effectual when added in combination to the geomaterial. The characterization of the wastes was informative in understanding the governing mechanism prevalent in the waste stabilized mixtures. The toxicity characterization study revealed the non-toxic and non-hazardous nature of the waste materials, permitting their use in the construction of pavements. This study recommends the use of wastes in the subgrade of flexible pavements. Further research is needed for performance evaluation of the wastes on silt and sand geomaterials for their wider application.
机译:诸如池塘灰和砖窑粉尘等工业废料的产生增加,对地球环境构成了严重威胁。废料具有新颖的特性,因此可以确定其物理,化学,矿物学,形态,机械和毒性特性,以便可以根据技术和环境因素将这些废料作为建筑材料掺入。这项研究的目的是利用废料来稳定粘土土工材料,以解决柔性路面中路基层强度和刚度不足的问题。制备了包含池塘灰,砖窑粉尘及其混合物的土工材料混合物,并研究了重要的工程特性,例如混合物的可塑性,压实度和强度。对动态载荷响应的测量是路面施工中使用的土工材料准确表征的前提。使用先进的循环三轴试验,本研究评估了在循环载荷下池塘灰和砖窑粉尘在增加土工材料刚度方面的性能。为了刺激最恶劣的野外条件,在标准和四天的浸水条件下进行了刚度和强度测试。研究了几种用于预测刚度的应力相关模型的实现。人们发现,粉煤灰和砖窑粉尘可以有效地提高土工材料的刚度和强度。将废物添加到土工材料中时,效果最好。废物的特性有助于理解稳定废物混合物中普遍存在的控制机制。毒性表征研究表明,废料无毒无害,可在人行道施工中使用。本研究建议在柔性人行道的路基中使用废物。对于粉砂和砂土材料上的废物的性能评估,需要进一步研究以使其更广泛地应用。

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