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Shrinkage characteristics of structural nano-synthetic fibre-reinforced cementitious composites

机译:结构纳米合成纤维增强水泥基复合材料的收缩特性

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Cracks in cement composites act as penetration paths for exposure and structural deterioration, in addition to degrading the appearance of the cement. In particular, cracks can easily appear in both thin and wide slabs due to the large area exposed to ambient conditions. Small slab cracks quickly become larger when exposed to loads, which can lead to fatigue failure and a reduction in service life. To prevent such failures, joints can be installed at specific intervals within a slab to prevent random cracks. However, if these joints are installed without considering how the material will shrink, then these joints may introduce structurally vulnerable points. Using a mortar plastic shrinkage test, we evaluated shrinkage propensity in structural nano-synthetic fibre-reinforced cement composite over time; these results were compared with those of hooked-end-type steel fibre material. Based on the test results, a model was created to best reflect the properties of our composite among existing dry shrinkage models, to determine the optimal joint spacing for shrinkage behaviour compensation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:水泥复合材料中的裂缝不仅会破坏水泥的外观,还充当暴露和结构劣化的渗透途径。特别是,由于大面积暴露在环境条件下,薄板和宽板都容易出现裂纹。当承受载荷时,小板坯裂缝会迅速变大,这可能导致疲劳失效并缩短使用寿命。为防止此类故障,可以在平板中的特定间隔处安装接头,以防止出现随机裂缝。但是,如果在安装这些接头时未考虑材料如何收缩,则这些接头可能会引入结构上的脆弱点。使用砂浆塑性收缩测试,我们评估了结构纳米合成纤维增强水泥复合材料随时间的收缩倾向。将这些结果与钩型钢纤维材料的结果进行了比较。根据测试结果,创建了一个模型,以在现有的干缩模型中最佳地反映我们复合材料的性能,从而确定用于补偿收缩行为的最佳接头间距。 (C)2016 Elsevier Ltd.保留所有权利。

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