Cracking risk of high-performance cement composites due to restrained autogenous shrinkage with and without soaked lightweight aggregate

IF 1.1 Q3 ENGINEERING, CIVIL Archives of Civil Engineering Pub Date : 2023-12-21 DOI:10.24425/ace.2023.147679
Adam Zieliński, Anton K. Schindler, M. Kaszyńska
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Abstract

: Due to the large amount of binder and low water-cement ratio, high-performance cement composites have high compressive strength and a dense hardened cement paste microstructure. External curing is insufficient, as it cannot reach the interior parts of the structure, which allows autogenous shrinkage to occur in the inside. Lack of prevention of autogenous shrinkage and high restraint causes structural microcracks around rigid components (aggregate, rebars). Consequently, this phenomenon leads to the propagation of internal microcracks to the surface and reduced concrete durability. One way to minimize autogenous shrinkage is internal curing. The use of soaked lightweight aggregate to minimize the risk of cracking is not always sufficient. Sorption and desorption kinetics of fine and coarse fly ash aggregate were tested and evaluated. The correlation between the development of linear autogenous shrinkage and the tensile stresses in the restrained ring test is assessed in this paper. A series oflinearspecimens,withcross-sectionandlengthcustomdesignedtomatchthegeometryoftheconcrete ring, were tested and analyzed. Determination of the maximum tensile stresses caused by the restrained autogenous shrinkage in the restrained ring test, together with the approximation of the tensile strength development of the cement composites were used to evaluate the cracking risk development versus time. The high-performance concretes and mortars produced with mineral aggregates and lightweight aggregates soaked with water were tested. The use of soaked granulated fly ash coarse lightweight aggregate in cementitious composites minimized both the autogenous shrinkage and cracking risk.
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有无浸泡轻质骨料的高性能水泥复合材料因受约束自生收缩而产生的开裂风险
:由于粘结剂用量大、水灰比低,高性能水泥复合材料具有很高的抗压强度和致密的硬化水泥浆微观结构。外部固化不够充分,因为它无法到达结构内部,从而导致内部发生自生收缩。由于无法防止自生收缩和高约束,刚性构件(骨料、钢筋)周围会出现结构微裂缝。因此,这种现象会导致内部微裂缝向表面扩展,降低混凝土的耐久性。减少自生收缩的一种方法是内部养护。使用浸泡过的轻质骨料来降低开裂风险并不总是合适的。我们测试并评估了水泥和粗灰骨料的吸附和解吸动力学。本文评估了约束环试验中线性自生收缩的发展与拉伸应力之间的相关性。测试和分析了一系列线性试样,这些试样的横截面和长度是根据混凝土环的几何形状定制的。通过测定约束环试验中约束自生收缩引起的最大拉应力,以及水泥复合材料拉伸强度发展的近似值,评估了开裂风险随时间的发展变化。测试了用水浸泡矿物骨料和轻质骨料生产的高性能混凝土和砂浆。在水泥基复合材料中使用浸泡过的粒化浮灰粗轻质骨料可将自生收缩和开裂风险降至最低。
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来源期刊
Archives of Civil Engineering
Archives of Civil Engineering ENGINEERING, CIVIL-
CiteScore
1.50
自引率
28.60%
发文量
0
审稿时长
24 weeks
期刊介绍: ARCHIVES OF CIVIL ENGINEERING publish original papers of the theoretical, experimental, numerical and practical nature in the fields of structural mechanics, soil mechanics and foundations engineering, concrete, metal, timber and composite polymer structures, hydrotechnical structures, roads, railways and bridges, building services, building physics, management in construction, production of construction materials, construction of civil engineering structures, education of civil engineers.
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