用水泥和沙子加固的碎混凝土骨料的可持续部署

Q3 Materials Science
V. Sharma, A. Kumar, A. Kaur
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引用次数: 1

摘要

目的:论文评估了碎混凝土骨料(CCA)与水泥和沙子混合形成土木工程现场应用复合材料的可行性。设计/方法/方法:通过进行普氏压实和加州承载比(CBR)试验,观察CCA的压实和强度特性。使用不同比例的CCA、沙子和水泥。此外,还研究了养护期(0、4、7、14和28天)的影响。此外,还进行了回归分析,以开发经验表达式来预测CCA复合材料的压实和强度特性。研究结果:将CCA含量增加到50%会增加最大干容重(MDUW),并降低最佳含水量(OMC)。然而,随着其含量的进一步增加,MDUW降低,OMC增加。如果CCA含量增加到50%,则CBR值的百分比增加可以增加到412%。然而,如果使用100%的CCA含量,则可以使CBR降低约20%。多元回归分析表明,实验结果与预测值吻合较好。研究局限性/影响:获得的结果完全取决于材料的类型。然而,他们赞成将所用材料作为道路底基层的可能选择,也有利于减少可用自然资源的负担。因此,建议进行一些初步测试,以确认材料的可行性。实际意义:拟议的研究将指导设计工程师选择CCA作为道路施工的潜在材料之一。独创性/价值:据观察,有必要在不损害其机械性能的情况下最大限度地利用拆建废物。因此,考虑到这一点,进行了本研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sustainable deployment of crushed concrete aggregates strengthened with cement and sand
Purpose: Paper assessed the feasibility of crushed concrete aggregates (CCA), a subsidiary of construction and demolition (C&D) waste, blended with cement and sand to form a composite for civil engineering field applications. Design/methodology/approach: The compaction and strength characteristics of CCA were observed by conducting Proctor compaction and California Bearing Ratio (CBR) tests. Different proportions of CCA, sand and cement were used. Moreover, the effect of curing period (0, 4, 7, 14 and 28 days) was also studied. In addition, regression analyses were performed to develop empirical expressions to predict the compaction and strength characteristics of the CCA composite. Findings: Increasing the CCA content up to 50% increases the maximum dry unit weight (MDUW) and decreases the optimum moisture content (OMC). However, on further increasing its content the MDUW decreases and OMC increases. Percent increase in the CBR value can go up to 412% if the CCA content is increased up to 50%. However, the percent reduction in CBR of about 20% can take place if 100% CCA content is used. Moreover, multiple regression shows that the experimental results are in good agreement with the predicted values. Research limitations/implications: The results obtained are purely dependent on the type of material. However, they are in favour of the used material as a probable option for road sub-base layer, and also for reducing burden on available natural resources. Therefore, it is recommended to conduct some initial tests to confirm the feasibility of the material. Practical implications: The proposed study will guide the design Engineers to choose CCA as one of the potential materials for road construction. Originality/value: It was observed that there is a need to maximize the utilization of C&D waste without making any compromise with its mechanical properties. So keeping that in view, the present study was conducted.
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来源期刊
Archives of materials science and engineering
Archives of materials science and engineering Materials Science-Materials Science (all)
CiteScore
2.90
自引率
0.00%
发文量
15
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