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ANALYSIS OF MECHANICAL PROPERTIES OF HYDROTHERMALLY CURED HIGH STRENGTH CEMENT MATRIX FOR TEXTILE REINFORCED CONCRETE

机译:纤维增强混凝土的水硬性高强水泥基力学性能分析

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摘要

The main objective of this article is to describe the influence of hydrothermal curing conditions in an autoclave device (different pressure and temperature), which took place at various ages of a fresh mixture (cement matrix – CM, and fibre-reinforced cement matrix – FRCM), on textile reinforced concrete production. The positive influence of autoclaving has been evaluated through the results of physical and mechanical testing – compressive strength, flexural strength, bulk density and dynamic modulus of elasticity, which have been measured on specimens with the following dimensions: 40×40×160mm3. In addition, it has been found that increasing the pressure and temperature resulted in higher values of measured characteristics. The results indicate that the most suitable surrounding conditions are 0.6MPa, and 165 °C at the age of 21 hours; the final compressive strength of cement matrix is 134.3MPa and its flexural strength is 25.9MPa (standard cured samples achieve 114.6MPa and 15.7MPa). Hydrothermal curing is even more effective for cement matrix reinforced by steel fibres (for example, the compressive strength can reach 177.5MPa, while laboratory-cured samples achieve a compressive strength of 108.5MPa).
机译:本文的主要目的是描述高压灭菌设备中水热固化条件(压力和温度的不同)的影响,这些条件发生在不同年龄的新鲜混合物(水泥基质– CM和纤维增强水泥基质– FRCM)中),用于纺织钢筋混凝土的生产。高压灭菌的积极影响已通过物理和机械测试的结果进行了评估-抗压强度,抗弯强度,堆积密度和动态弹性模量,这些样品在以下尺寸的样品上进行了测量:40×40×160mm3。另外,已经发现增加压力和温度导致更高的测量特性值。结果表明,最合适的环境条件是在21小时时的0.6MPa和165°C的环境。水泥基体的最终抗压强度为134.3MPa,抗弯强度为25.9MPa(标准固化样品达到114.6MPa和15.7MPa)。水热固化对钢纤维增强的水泥基体更为有效(例如,抗压强度可达到177.5MPa,而实验室固化的样品可达到108.5MPa的抗压强度)。

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