Frąc Maksymilian, Szołdra Paulina, Pichór Waldemar
Department of Building Materials Technology, Faculty of Materials Science and Ceramics, AGH University of Science and Technology, Al. Mickiewicza 30, 30-059 Krakow, Poland.
Materials (Basel). 2022 Apr 9;15(8):2770. doi: 10.3390/ma15082770.
The objective of this work was to obtain cement composites with low percolation thresholds, which would reduce the cost of graphite and maintain good mechanical properties. For this purpose, exfoliated graphite was used as a conductive additive, which was obtained by exfoliating the expanded graphite via ultrasonic irradiation in a water bath with surfactant. To obtain evenly distributed graphite particles, the exfoliated graphite was incorporated with the remaining surfactant into the matrix. This study is limited to investigating the influence of exfoliated graphite on the electrical and mechanical properties of cement mortars. The electrical conductivity of the composites was investigated to determine the percolation threshold. The flexural and compressive strength was tested to assess the mechanical properties. In terms of the practical applications of these composites, the piezoresistive, temperature-resistivity, and thermoelectric properties were studied. The results showed that the incorporation of exfoliated graphite with surfactant is an effective way to obtain a composite with a percolation threshold as low as 0.96% (total volume of the composite). In addition, the mechanical properties of the composites are satisfactory for practical application. These composites also have good properties in terms of practical applications. As a result, the exfoliated graphite used can significantly facilitate the practical use of smart composites.
这项工作的目的是获得具有低渗流阈值的水泥复合材料,这将降低石墨成本并保持良好的机械性能。为此,使用了剥离石墨作为导电添加剂,它是通过在含有表面活性剂的水浴中通过超声辐照对膨胀石墨进行剥离而获得的。为了获得均匀分布的石墨颗粒,将剥离石墨与剩余的表面活性剂一起掺入基体中。本研究仅限于研究剥离石墨对水泥砂浆电学和力学性能的影响。研究了复合材料的电导率以确定渗流阈值。测试了抗折强度和抗压强度以评估力学性能。就这些复合材料的实际应用而言,研究了压阻、温度-电阻率和热电性能。结果表明,将剥离石墨与表面活性剂结合是获得渗流阈值低至0.96%(复合材料总体积)的复合材料的有效方法。此外,复合材料的力学性能对于实际应用来说是令人满意的。这些复合材料在实际应用方面也具有良好的性能。因此,所使用的剥离石墨可以显著促进智能复合材料的实际应用。