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A genetic programming predictive model for parametric study of factors affecting strength of geopolymers

机译:用于影响地质聚合物强度的参数研究的遗传规划预测模型

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摘要

In this paper, the effect of different factors including mixture proportions and curing conditions on the compressive strength of fly ash-based geopolymers was studied. Several parameters were used to construct a predictive model based on genetic programming, which delivers the compressive strength of specimens with reasonable accuracy. A parametric study was carried out to evaluate the effect of each individual parameter on the strength of the geopolymers. The results obtained by the model showed that changing the percentage of aggregates in the standard range, and age of curing are ineffective on the compressive strength of the considered geopolymers. On the other hand, increasing the percentage of fly ash, curing temperature and liquid to ash weight ratio were shown to improve the compressive strength. Another important parameter namely, sodium silicate to alkali hydroxide weight ratio had an optimum value of 2.5 to deliver the highest strength. All of the model predictions were in accordance with the experimental results and those available in the literature for many types of fly ash-based geopolymers. It was concluded that fly ash (sourced from Sarawak, Malaysia) can be suitably used to synthesize geopolymers when the producing factors are precisely determined.
机译:本文研究了混合比例和固化条件等因素对粉煤灰基聚合物抗压强度的影响。使用几个参数来构建基于遗传程序的预测模型,从而以合理的精度提供标本的抗压强度。进行了参数研究,以评估各个参数对地质聚合物强度的影响。该模型获得的结果表明,在标准范围内改变骨料的百分比和固化时间对考虑的地质聚合物的抗压强度无效。另一方面,增加粉煤灰的百分含量,固化温度和液灰比可提高压缩强度。另一个重要参数,即硅酸钠与碱金属氢氧化物的重量比具有2.5的最佳值,以提供最高的强度。所有模型预测均与实验结果以及文献中针对多种类型的粉煤灰基地聚合物的预测一致。结论是,当精确确定生产因子时,粉煤灰(来自马来西亚沙捞越州)可适用于合成地质聚合物。

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