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Study on capillary water absorption properties of polypropylene fibre coal gangue ceramsite concrete under freeze-thaw damage

机译:聚丙烯纤维煤矸石陶瓷混凝土毛细管吸水性能研究冻融损伤

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摘要

In order to probe the effects of freeze-thaw damage and polypropylene (PP) fibres on the capillary water absorption of coal gangue ceramsite concrete (CGCC), the freeze-thaw cycle test and capillary water absorption test were carried out to study the effect of PP fibres content on the unit cumulative water absorption and water absorption rate of CGCC under freeze-thaw damage, establishing a model of initial capillary water absorption rate of PP fibre coal gangue concrete considering freeze-thaw damage. The results showed that, when freeze-thaw cycles were constant, the larger the PP fibres content was, the larger was the unit cumulative water absorption of CGCC. As the freeze-thaw cycles increased, the initial capillary water absorption rate of both PP fibre CGCC and CGCC showed a power function growth trend. In this study, the initial capillary water absorption rate prediction model was obtained through regression analysis, and the test results were in good agreement with the model prediction results.
机译:为了探讨冻融损伤和聚丙烯(PP)纤维对煤矸石陶瓷混凝土(CGCC)毛细管吸水的影响,进行了冻融循环试验和毛细吸水试验,以研究效果PP纤维含量对CGCC累积的单位累积吸水率和吸水率在冻融损伤下,考虑冻融损伤的PP纤维煤矸石混凝土初始毛细吸收率模型。结果表明,当冻融循环恒定时,PP纤维含量越大,CGCC的单位累积吸水量越大。随着冻融循环的增加,PP纤维CGCC和CGCC的初始毛细吸收率显示出功率函数的增长趋势。在该研究中,通过回归分析获得初始毛细管吸水率预测模型,并且测试结果与模型预测结果吻合良好。

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