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Beneficial Reuse of Foundry Sands in Controlled Low Strength Material

机译:受控低强度材料中铸造砂的有益再利用

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A study was conducted to determine how the unconfined compressive strength and flow of flowable fills prepared with foundry sand depends on the bentonite content of the sand. The study showed that there are several advantages of using foundry sands with bentonite content > 6 % as the fine aggregate in flowable fill. These advantages include: (ⅰ) lower long-term strength gain (making the design of excavatable mixtures simpler and less risky), (ⅱ) less flow loss, (ⅲ) fewer components and fewer interactions between components that are difficult to characterize, and (ⅳ) a larger fraction of inexpensive foundry sand being used in the mixture. The unconfmed compressive strength (UCS) of flowable fills prepared with foundry sands is sensitive to the water-cement ratio (W/C), at least when the W/C spans a broad range (4-11). Mixtures with W/C < 6.5 generally will have excessive UCS, whereas a suitable UCS is generally associated with W/C > 6.5. Bentonite content does not affect the UCS systematically, but it does have an indirect effect in that foundry sands with more bentonite require more water to flow, which affects strength. The amount of water required to achieve adequate flow primarily is a function of the bentonite content of the foundry sand. In general, as the bentonite content of the foundry sand increases, the water content of the mixture should increase correspondingly. The amount of fly ash has only a modest effect on the amount of water required. The most important factor affecting flow loss is the presence of cementitious fly ash in the mixture. Flow loss can be reduced appreciably by using a foundry sand with at least 6 % bentonite so that fly ash fines need not be added to the mixture.
机译:进行了一项研究,以确定铸造砂制备的无边压缩强度和可流动填充物的流量如何取决于砂土中膨润土的含量。研究表明,使用膨润土含量> 6%的铸造砂作为可流动填料中的细骨料有很多优点。这些优点包括:(ⅰ)较低的长期强度增益(使可挖掘混合物的设计更简单,风险更低),(ⅱ)流动损失少,(ⅲ)较少的组分以及难以表征的组分之间的相互作用少;以及(ⅳ)在混合物中使用了较大比例的廉价铸造砂。铸造砂制备的可流动填充物的无限制抗压强度(UCS)对水灰比(W / C)敏感,至少在W / C跨度较大时(4-11)。 W / C <6.5的混合物通常会有过量的UCS,而合适的UCS通常与W / C> 6.5相关。膨润土的含量不会系统地影响UCS,但它的间接影响是膨润土含量更高的铸造砂需要更多的水流过,从而影响强度。实现足够流量所需的水量主要是铸造砂中膨润土含量的函数。通常,随着铸造砂中膨润土含量的增加,混合物中的水含量也应相应增加。飞灰的量对所需的水量仅具有适度的影响。影响流动损失的最重要因素是混合物中胶凝粉煤灰的存在。通过使用含有至少6%膨润土的铸造砂可以显着降低流动损失,因此无需向混合物中添加粉煤灰。

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