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Research on the mechanical properties and electrical conductivity of cement mortar based on recycled nano-iron boride

机译:基于回收的纳米铁硼的机械性能和水泥砂浆的电导率的研究

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摘要

Abstract Traditional cement-based materials are being gradually replaced by nanomodified cement-based materials because the traditional materials cannot meet the production needs of modern society. Nano-iron boride (nano-FeB) is a high-performance nanomaterial prepared from waste iron powder during construction. Its one-dimensional structure is similar to that of carbon nanotubes, which makes it a potential candidate for nano-reinforcement materials. In this paper, the effects of different contents of recycled nano-FeB (0%, 0.05%, 0.075%, and 0.1?wt.%, based on cement weight) on the mechanical properties and electrical conductivity of cement mortar were studied. The results showed that the mechanical properties of the composite cement mortar were improved with the addition of nano-FeB. When the content of nano-FeB was 0.075%, the 28 d compressive strength and flexural strength of the composite cement mortar increased by 60.2% and 42.1%, respectively. In addition, a 0.075% nano-FeB content favorably improved the conductivity of cement mortar. Compared with that of the control group, the volume resistivity of the composite cement mortar decreased by one order of magnitude.
机译:由于传统材料无法满足现代社会的生产需求,因此抽象的传统水泥基材料逐渐被纳米化水泥材料所取代。纳米铁硼化物(纳米-FEB)是一种由施工过程中废料粉制备的高性能纳米材料。它的一维结构与碳纳米管的结构相似,这使其成为纳米增强材料的潜在候选者。在本文中,研究了研究的机械性能和水泥砂浆的电导率的不同含量(0%,0%,0.05%,0.075%和0.1 wt。%)的影响。结果表明,通过添加纳米FEB,改善了复合水泥砂浆的机械性能。当纳米FEB的含量为0.075%时,复合水泥砂浆的28 d抗压强度和弯曲强度分别增加了60.2%和42.1%。此外,0.075%的纳米-FEB含量有利地提高了水泥砂浆的电导率。与对照组的相比,复合水泥砂浆的体积电阻率降低了一个数量级。

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