以采石场粉尘和废塑料代替砂石的混凝土抗压强度数学模型的建立

B. V. Bahoria, D. Parbat, P. Nagarnaik, U. Waghe
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引用次数: 2

摘要

本研究的范围是提出考虑到采石场粉尘可持续利用的工业,并找出目前情况下的任何差距。“可持续利用”一词的意思是充分利用采石场的粉尘,以应付目前的需要,相反,保护自然资源和寻找办法,尽量减少与采石场粉的生产及其处置有关的环境影响。用普通河砂浇筑混凝土,对比了25%、50%、75%、100%的采石场粉尘和废塑料的替代率。采石场粉尘与废塑料的掺入显著改善了混凝土基体的强度性能。对模型进行回归分析和验证,将7、14、28和90天的抗压强度结果相互关联。与常规混凝土相比,在混凝土中加入掺有ldpe废塑料的采石场细粉尘可改善基体密实度。在含天然砂、采石场粉尘和废塑料的混凝土上测试了新鲜混凝土和硬化混凝土的性能。建立了预测混凝土14、28、90天抗压强度的数学模型。结果与SPSS统计软件进行了比较。所制备的模型已经过验证,误差在允许的公差范围内。研究发现,采石场粉尘和废塑料作为填料,与高效增塑剂配合使用,可改善混凝土的力学性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of Mathematical Models for Compressive Strength of Concrete Containing Quarry Dust and Waste Plastic as Sand Replacement
The scope of this research is to bring forth the industry taking into account the sustainable utilization of quarry dust, and to find out any gaps in present scenario. The term sustainable utilization intends the use of quarry dust to their full potential to cope up with the needs of the present, on the contrary conserving natural resources and finding solutions to minimize the environmental impacts associated both with quarry fines production and its disposal. Concrete mixes were casted using ordinary river sand and compared with 25%, 50%, 75%, 100% replacement with quarry dust in combination with waste plastic in fabriform. The addition of quarry dust along with waste plastic significantly improved the concrete matrix properties in terms of strength. Regression analysis and validation of the models developed was done to co-relate the results of compressive strength for 7, 14, 28, 90 days. The addition of fine quarry dust with ldpe as waste plastic in concrete resulted in improved matrix densification compared to conventional concrete. Fresh and hardened concrete properties have been tested on concrete containing natural sand along with quarry dust and waste plastic. An attempt has been made to prepare mathematical models for predicting 14, 28, 90 days compressive strength of concrete. The results have been compared with that of SPSS software. The models so prepared have been validated and the error lies within the permissible limit of tolerance. It is found that quarry dust in addition to waste plastic as filler improves the mechanical properties of concrete when used along with super plasticizer.
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