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首页> 外文期刊>Journal of neurosurgical sciences >Effect of Expanded Perlite Aggregate Size on Physical and Mechanical Properties of Ultra Lightweight Concrete Produced with Expanded Perlite Aggregate
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Effect of Expanded Perlite Aggregate Size on Physical and Mechanical Properties of Ultra Lightweight Concrete Produced with Expanded Perlite Aggregate

机译:扩大珍珠岩聚集体大小对扩大渗透骨料生产超轻型混凝土物理和力学性能的影响

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摘要

In this study, ultra-light weight concrete (ULWC) with heat-insulating properties is produced by using different size expanded perlite aggregates and various admixtures. The compressive strength, 4 point bending strength, freezing and thawing resistance, water absorption, dry unit weight, ultra sound velocities and thermal conductivity of the samples were determined by applying appropriate tests. The effect of different size expanded perlite aggregate on the properties of ULWC were also investigated in this study and it was found that as the expanded perlite aggregate diameter increased, the void volume uniformity, water absorption percentage and freezing-thawing resistance increased while the unit volume weight of ULWC samples, ultrasound speed velocities, thermal conductivity and compressive strength were decreased. The changes in the masses and compressive strength of ULWC samples subjected to freezing and thawing cycles were examined. The compressive strength loss was found to be between 5 % and 47 % while the weight loss was between 1 % and 3.5 % after 15 freezing and thawing cycles. Finally, the effects of the admixtures on the fresh properties of ULWC were examined and it was determined that the use of 4.5 kg of air-entraining material in one cubic meter of concrete mix is the most ideal ratio and the use of more than 0.01 % by volume of polypropylene fiber is caused settlements in fresh concrete mixtures.
机译:在本研究中,通过使用不同尺寸的膨胀珍珠岩聚集体和各种混合物来产生具有隔热性质的超轻型混凝土(ULWC)。通过施加适当的测试,测定压缩强度,4点弯曲强度,冷冻和解冻电阻,吸水,干燥单位重量,超声速度和样品的导热率。在本研究中还研究了不同尺寸扩展的珍珠岩聚集体对ULWC性质的影响,发现随着装置的膨胀珍珠岩聚集直径增加,空隙体积均匀性,吸水百分比和冻结抗性在单位体积时增加增加。 ULWC样品的重量,超声速度速度,导热性和抗压强度都减少。检查了对冷冻和解冻循环进行的ULWC样品的质量和抗压强度的变化。抗压强度损失被发现在5%至47%之间,而重量损失在15次冷冻和解冻循环后的重量损失为1%和3.5%。最后,研究了对外加剂对ULWC的新鲜性质的影响,确定了在一个立方米混凝土混合物中使用4.5公斤的空气夹带材料是最理想的比例,使用超过0.01%通过体积的聚丙烯纤维在新鲜混凝土混合物中引起沉降。

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