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首页> 外文期刊>Materiales de Construccion >Predicting the drying shrinkage behavior of high strength portland cement mortar under the combined influence of fine aggregate and steel micro fiber
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Predicting the drying shrinkage behavior of high strength portland cement mortar under the combined influence of fine aggregate and steel micro fiber

机译:细骨料与钢微纤维联合作用下高强度硅酸盐水泥砂浆的干缩性能预测

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摘要

The workability, 28-day compressive strength and free drying shrinkage of a very high strength (121-142 MPa) steel micro fiber reinforced portland cement mortar were studied under a combined influence of fine aggregate content and fiber content. The test results showed that an increase in the fine aggregate content resulted in decreases in the workability, 28-day compressive strength and drying shrinkage of mortar at a fixed fiber content. An increase in the fiber content resulted in decreases in the workability and drying shrinkage of mortar, but an increase in the 28-day compressive strength of mortar at a fixed fine aggregate content. The modified Gardner model most accurately predicted the drying shrinkage development of the high strength mortars, followed by the Ross model and the ACI 209R-92 model. The Gardner model gave the least accurate prediction for it was developed based on a database of normal strength concrete.
机译:在细骨料含量和纤维含量的综合影响下,研究了极高强度(121-142 MPa)钢微纤维增强硅酸盐水泥砂浆的可加工性,28天抗压强度和自由干燥收缩率。试验结果表明,细骨料含量的增加导致固定纤维含量的砂浆的可加工性,28天抗压强度和干缩性降低。纤维含量的增加导致砂浆的可加工性和干燥收缩率降低,但是在固定的细骨料含量下,砂浆的28天抗压强度提高。改进的Gardner模型最准确地预测了高强度砂浆的干燥收缩发展,其次是Ross模型和ACI 209R-92模型。 Gardner模型给出了最不准确的预测,因为它是基于标准强度混凝土数据库开发的。

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