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首页> 外文期刊>Journal of materials in civil engineering >Properties of Air-Entrained Pumice Lightweight Aggregate Concrete and a Freezing-Resistance Forecasting Model
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Properties of Air-Entrained Pumice Lightweight Aggregate Concrete and a Freezing-Resistance Forecasting Model

机译:气浮轻质骨料混凝土的性能及抗冻性预测模型

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04015144.1-04015144.6%This study investigates the impact of air content on the mechanical properties and resistance of natural pumice lightweight aggregate concrete to freezing. The distributional characteristics of bubbles in pumice lightweight aggregate concrete are analyzed, and a freezing-resistance forecasting model for air-entrained pumice lightweight aggregate concrete is established. Experimental results show that the distribution of bubbles in natural pumice lightweight aggregate concrete is different from that in ordinary concrete. More bubbles are found in pumice, and fewer bubbles are found in mortar. The air content of non-air-entrained pumice lightweight aggregate concrete is almost the optimal air content of ordinary concrete. However, aggregate concrete has poor resistance to freezing. The optimal air content of ordinary concrete does not apply to pumice lightweight aggregate concrete. Significantly improved freezing resistance is observed after air entrainment. However, the cube compressive strength of pumice lightweight aggregate concrete exhibited faster loss than that of ordinary concrete. The mean strength loss reaches 8.74% if air content is increased by 1%. Cube compressive strength is an important mechanical index, together with freezing-resistance test results, when establishing a freezing-resistance forecasting model of natural pumice lightweight aggregate concrete.
机译:04015144.1-04015144.6%这项研究调查了空气含量对天然浮石轻质骨料混凝土的机械性能和抗冻性的影响。分析了浮石轻质骨料混凝土中气泡的分布特征,建立了加气浮石轻质骨料混凝土的抗冻性预测模型。实验结果表明,天然浮石轻质骨料混凝土中的气泡分布与普通混凝土中的气泡分布不同。在浮石中发现更多的气泡,在灰浆中发现更少的气泡。非加气浮石轻质骨料混凝土的空气含量几乎是普通混凝土的最佳空气含量。但是,骨料混凝土抗冻性差。普通混凝土的最佳空气含量不适用于浮石轻质骨料混凝土。夹带空气后观察到抗冻性显着提高。但是,浮石轻质骨料混凝土的立方抗压强度比普通混凝土具有更快的损耗。如果空气含量增加1%,平均强度损失将达到8.74%。在建立天然浮石轻质骨料混凝土的抗冻性预测模型时,立方体的抗压强度与抗冻性测试结果一起是重要的机械指标。

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