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Potential of rubber aggregates to modify properties of cement based-mortars: Improvement in cracking shrinkage resistance

机译:橡胶骨料改变水泥基砂浆性能的潜力:改善抗开裂收缩性

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Cement-based materials suffer from their low tensile strength and poor strain capacity: they are sensitive to cracking, above all to shrinkage cracking. Enhancing the cracking resistance of cementitious materials is the objective of a broad ongoing research programme. In this regard, the aim of this work is the design of a cementitious composite exhibiting high strain capacity before localised cracking. It was assumed that the use of aggregates with low elastic modulus could be a solution. Rubber aggregates obtained from shredded non-reusable tyres were used, conferring an additional environmental interest on the study. As expected, results show that rubberised mortars exhibit a lower modulus of elasticity and have higher tensile capacity for deformation before macrocrack formation. However, there is one drawback: a decrease in the modulus of elasticity of a cement-based material is accompanied by a decrease in its strength. Results also confirm that rubber aggregate incorporation increases length change due to shrinkage. In contrast, ring-test results demonstrate that the strain capacity enhancement provided by rubber aggregate incorporation largely offsets the additional shrinkage length changes: shrinkage cracking is delayed and, when it occurs, the crack network exhibits thin crack openings which are less detrimental.
机译:水泥基材料的拉伸强度低且应变能力差:它们对开裂敏感,尤其是对收缩开裂。增强胶结材料的抗裂性是正在进行的广泛研究计划的目标。在这方面,这项工作的目的是设计一种在局部开裂之前具有高应变能力的胶凝复合材料。假定使用具有低弹性模量的骨料是一种解决方案。使用了从切碎的不可重复使用的轮胎获得的橡胶骨料,这给研究带来了更多的环境利益。如预期的那样,结果表明,涂​​胶的砂浆表现出较低的弹性模量,并且在形成大裂纹之前具有较高的变形抗拉能力。然而,存在一个缺点:水泥基材料的弹性模量的降低伴随其强度的降低。结果还证实,橡胶聚集体的掺入增加了由于收缩引起的长度变化。相反,环试验结果表明,橡胶集料掺入所提供的应变能力增强在很大程度上抵消了附加的收缩长度变化:收缩裂纹被延迟,并且当发生裂纹时,裂纹网络显示出较薄的裂纹开口,其危害较小。

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