温度变化对添加促进剂的普通混凝土弹性模量和抗压强度的影响

Cierio Yuhanata, Dwi Nurtanto, Nanin Meyfa Utami
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引用次数: 0

摘要

现代的发展迅速,这可以从快速的发展中看出。随着世界建筑业发展规模的不断扩大,未来对混凝土的有效、实用和需求也越来越大。混凝土的强度受到材料质量、外加剂、加工过程和混凝土养护的强烈影响。掺入促进剂的混凝土具有较高的抗压强度,这是由于促进剂的反应可以加速混凝土的粘结过程和初始抗压强度的发展。直接浸没处理的混凝土具有较大的抗压强度。混凝土的处理方法有几种,包括浇水和高温。本研究采用水泥重量3%的固定速凝剂比例,试验时间分别为7天和28天。所采用的处理方法为露天、浸没、高温,温度分别为25℃、30℃、35℃、40℃、45℃。从研究结果来看,掺加促进剂的普通混凝土与掺加促进剂的混凝土在性能上存在差异。采用45℃高温处理方法的混凝土产生的强压力最高。这是由于处理温度越高,水化过程的速度越快,影响混凝土的抗压强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Temperature Variations on Elevated Temperature Curing Method Towards Modulus of Elasticity and Compressive Strength of Normal Concrete With Additional Accelerator
Developments in modern times have grown rapidly, this can be seen from the rapid development. Along with the increasing scale of development in the world of construction, more and more concrete is needed effectively, practically, and in the future. The strength of concrete is strongly influenced by the quality of the materials, admixtures, the working process, and the curing of the concrete. Concrete with the addition of an accelerator has higher compressive strength, this is due to the accelerator reaction which can accelerate the binding process and the development of the initial compressive strength of the concrete. Concrete with direct immersion treatment has large compressive strength. There are several methods of treating concrete, including watering and high temperature. This study used a fixed accelerator proportion of 3 % of the weight of cement with a test time of 7 and 28 days. The treatment method used is open space, immersion, high temperature at temperatures of 25 ºC, 30 ºC, 35 ºC, 40 ºC and 45 ºC. From the results of the research, there are differences in characteristics between normal concrete and concrete with the addition of an accelerator. Concrete with a high-temperature treatment method at a temperature of 45 ºC produces the highest strong pressure. This is caused by the higher the treatment temperature, the higher the rate of hydration process that affects the compressive strength of the concrete.
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