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Laboratory Evaluation of Utilizing Waste Heavy Clay and Foundry Sand Blends as Construction Materials

机译:利用废弃的重粘土和铸造砂混合物作为建筑材料的实验室评估

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摘要

This paper presents a study in which the feasibility of utilizing two industrial wastes, a heavy clay material from the automotive industry and a waste foundry sand from the metallurgical industry, as construction materials was evaluated through laboratory experiments. The laboratory study blended two industrial wastes at different proportions and stabilized the blend with varying amounts of cement. The engineering properties of the blends were evaluated through the Atterberg limits, Proctor compaction test, direct shear, and unconfined compressive strength tests. The results from this study indicate that blending foundry sand into waste heavy clay significantly reduced its plasticity and cohesion and hence made it possible to be further stabilized with cement. In addition, it is observed that the blended materials had other improved properties such as increased maximum dry unit weight, friction angle, and compressive strength. However, the increase in compaction and strength properties became less significant with the increase of foundry sand content. An optimum blending ratio was recommended through this laboratory study.
机译:本文提出了一项研究,其中通过实验室实验评估了利用两种工业废料,汽车工业的重粘土材料和冶金工业的废铸造砂作为建筑材料的可行性。实验室研究混合了两种不同比例的工业废物,并用不同量的水泥稳定了混合物。通过Atterberg极限,Proctor压实测试,直接剪切和无侧限抗压强度测试来评估共混物的工程性能。这项研究的结果表明,将铸造砂掺入废重粘土中会显着降低其可塑性和内聚力,因此可以用水泥进一步稳定。另外,观察到,共混材料具有其他改善的性能,例如增加的最大干重,摩擦角和抗压强度。然而,随着铸造砂含量的增加,压实度和强度特性的增加变得不那么显着。通过该实验室研究建议最佳的混合比例。

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