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Application of Pressure-Sensitive Materials in Cement-Based Composites for Self-Assessment of Structural Degradation

机译:压敏材料在水泥基复合材料结构退化自我评估中的应用

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The accumulation of internal defects in materials often results in degraded performance and the prevention of sudden material failure has become an important issue in materials research. In large structures such as buildings and bridges, sudden collapses due to the buildup of internal cracks can lead to significant losses, both in property and lives. If concrete structures were capable of performing self-assessments to reveal the presence of cracking, warnings could be issued before actual damage occurs. The addition of conductive materials is nessary to perform this kind of self-diagnosis in cement-based materials. This study added graphite to cement-based materials to stigate conductivity behavior and sensitivity to the effects of pressure. This study was conducted the mixture with a water-cementitious ratio of 0.6 for the preparation of cylindrical specimens (φ 10 cm x 20 cm) in which 5, 10 and 15 % of the cement was replaced with graphite. We then investigated the influence of graphite contents on the electrical resistivity of the mortar and conducted cyclic loading o determine the relationship between rate of change in resistivity, stress and strain, and the application of load and the resulting changes in resistivity to indicate the existence and development of internal cracking. Results show that the addition of graphite to mortar significantly reduces the compressive strength of the concrete presented a linear decline proportional to the addition of graphite. With regard to resistivity, concrete with 5 % graphite content reached the percolation threshold of the concrete and with an increase in the amount of graphite, resistivity gradually decreased. In cyclic loading tests with a fixed load, specimens with 5 % or more graphite content 'were better able to reflect the relationship between loading and resistivity. The results of cyclic loading tests with loads of increasing and decreasing magnitude indicated that specimens with 10 and 15 % graphite content provided a clearer indication of the relationship between loading and resistivity, due to their increased sensitivity to internal cracking conditions. In this study, the mixture in which 10 % of the cement was replaced by graphite provided the best tradeoff between strength and sensitivity to the effects of cracking, making it the best option for practical use in construction.
机译:材料中内部缺陷的积累通常会导致性能下降,防止材料突然失效已成为材料研究中的重要问题。在诸如建筑物和桥梁的大型结构中,由于内部裂缝的堆积而导致的突然倒塌会导致财产和生命的重大损失。如果混凝土结构能够进行自我评估以显示裂纹的存在,则可以在实际损坏发生之前发出警告。导电材料的添加对于在水泥基材料中进行这种自我诊断非常必要。这项研究将石墨添加到水泥基材料中,以刺激导电性能和对压力影响的敏感性。进行了这项研究,以水硬性比为0.6的混合物制备圆柱形试样(φ10 cm x 20 cm),其中5%,10%和15%的水泥被石墨代替。然后,我们研究了石墨含量对砂浆电阻率的影响,并进行了循环加载,以确定电阻率,应力和应变的变化率与载荷的施加以及所引起的电阻率变化之间的关系,以表明存在和存在。内部裂纹的发展。结果表明,在砂浆中添加石墨会显着降低混凝土的抗压强度,呈现出与石墨添加成比例的线性下降。关于电阻率,具有5%石墨含量的混凝土达到了混凝土的渗滤阈值,并且随着石墨含量的增加,电阻率逐渐降低。在固定载荷的循环载荷测试中,石墨含量为5%或更高的试样能够更好地反映载荷与电阻率之间的关系。周期性载荷测试结果表明,石墨含量分别为10%和15%的样品,由于其对内部破裂条件的敏感性提高,因此可以更清楚地表明载荷与电阻率之间的关系。在这项研究中,其中10%的水泥被石墨替代的混合物在强度和对开裂效果的敏感性之间提供了最佳折衷,使其成为实际在建筑中使用的最佳选择。

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