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首页> 外文期刊>Journal of Minerals and Materials Characterization and Engineering >Comparative Study of the Reactivity of Clay Earth Materials for the Production of Compressed Earth Blocks in Ambient Conditions: Effect on Their Physico-Mechanical Performances
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Comparative Study of the Reactivity of Clay Earth Materials for the Production of Compressed Earth Blocks in Ambient Conditions: Effect on Their Physico-Mechanical Performances

机译:粘土地球材料在环境条件下生产压缩土块的反应性的比较研究:对其物理力学性能的影响

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摘要

This study assesses the reactivity of four (04) different types of clayey earthen materials (Kamboinsé, Pabré, Saaba, and Kossodo) with Ca(OH)_(2), analytical lime (AL) versus lime residu (LR), in ambient conditions. The effect of the stabilization of the earth with the LR was also studied on the performances of compressed earth blocks (CEB). The lime content varied from 0% to 20% with respect to the mass of dry earth material. The analysis of the reactivity and physico-mechanical properties were respectively carried out on the solutions of the mixtures (earth + LR and earth + AL) and CEB (earth + LR). The mixtures were cured between 0 and 60 days at the ambient temperature of laboratory (30 ℃ ± 5 ℃ ). The results showed that the reactivity of the clayey earth materials with AL is comparable to that with the LR. At the same time, this reactivity improved the physical and mechanical properties of stabilized CEB depending on the type of earth material, lime content and curing time. The maximum values of the dry compressive strength, observed for each material stabilized with 20% LR, are 6 and 7 MPa (Kamboinsé), 8.8 and 9.3 MPa (Pabré), 6 and 6.5 MPa (Saaba), 8.8 and 9.7 MPa (Kossodo) respectively at curing time of 28 and 45 days. The structural efficiency of CEB was also improved which implies that, in the current conditions, the stabilization of earth materials using LR allows to produce the CEB for potential applications in wall masonry.
机译:本研究评估了四(04)不同类型的粘土土物料(Kamboinsé,pabré,saaba和kossodo)的反应性与Ca(OH)_(2),分析石灰(Al)与Lime Residu(LR),在环境中状况。还研究了压缩地球块(CEB)的性能对地球稳定地球的影响。对于干地球材料的质量,石灰含量从0%变化至20%。分别对混合物(地球+ LR和地球+ Al)和CEB(地球+ LR)的溶液进行反应性和物理机械性能的分析。在实验室(30℃±5℃)的环境温度下固化在0和60天之间。结果表明,用Al的Clayey地球材料的反应性与LR相当。同时,这种反应性改善了稳定CEB的物理和力学性能,这取决于地球材料的类型,石灰含量和固化时间。用20%LR稳定的每种材料观察到的干抗压强度的最大值为6和7MPa(Kamboinsé),8.8和9.3MPa(Pabré),6和6.5MPa(Saaba),8.8和9.7MPa(Kossodo )分别在28和45天的固化时间。 CEB的结构效率还提高了意味着,在当前条件下,使用LR的地球材料稳定允许生产CEB用于壁砌体中的潜在应用。

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