首页> 外文OA文献 >Effect of Improper Curing on Concrete Properties that may Affect Concrete Durability
【2h】

Effect of Improper Curing on Concrete Properties that may Affect Concrete Durability

机译:养护不当对可能影响混凝土耐久性的混凝土性能的影响

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

The use of concrete increasing annually due its favourable properties and readily availability. Demand for concrete will continue to increase and it will remain the world’s most important construction materials for many years to come. However, the use of Portland cement concrete has an environmental burned, and so in a drive to reduce the carbon footprint of construction, there is widespread attention directed towards the utilisation of wastes and industrial by-products to minimise Portland cement (PC) consumption. The cement industry increasingly uses additions, such as fly ash.udThe literature has established the use of fly ash as partial replacement of Portland cement to increase strength at later age and exhibit considerable enhancement in durability. However, such binders hydrate more slowly, so proper curing conditions become more important. Ideally, the durability of concrete should not be a concern. Some degree of weathering should be expected, but improper concreting procedures can cause the deterioration to be earlier than expected. Furthermore, since durability issues cannot be seen immediately, some assessment of the impact of improper concrete curing is needed.udThe study has involved casting of concretes prepared with either CEM I or a CEM I blend with 30% replacement with fly ash to investigate the impact of improper curing. Performance was evaluated in terms of compressive strength, drying shrinkage, transport properties and resistance to carbonation. Paste samples were characterised by TGA, XRD and SEM to follow hydration and microstructural development. Also since the degree of saturation is known to affect the compressive strength of concrete, and curing under ambient conditions will lead to changes in the degree of concrete saturation, the work checked the impact of the degree of saturation on compressive strength; to enable an accurate understanding of the impact of improper curing.udImproper curing leads to reduced compressive strength development and increased drying shrinkage. Sorptivity and permeability values were increased. This is due to reduced levels of cement hydration, as water evaporates from the concrete surface. The effect of improper curing on resistance to carbonation revealed that samples improperly cured carbonated more than those ideally cured. This study has shown that the impact on sorptivity and permeability is far greater than the impact on compressive strength, with implications for the long-term durability of concrete.udComposite cements, containing 30% fly ash, showed comparable strengths to CEM I concretes and improved transport properties when ideally cured. Additions of fly ash reduced the drying shrinkage. Improper curing however led to reduced performance. Strength was compromised by improper curing to a greater degree than for equivalent CEM I mixes. However, it was sorptivity and permeability which were most severely affected. This was due to the reduced degree of cement hydration leading preventing the pozzolanic reaction between the fly ash and portlandite. Also, higher carbonation depth was seen on fly ash samples that were not cured.udLow strength concrete, which already has an inherently higher porosity, is more greatly affected by improper curing than high strength concrete. This is presumed to be due to the ease with which water can evaporate from the surface of the more porous matrix. Also, concrete workability has been found to be a factor which can help to reduce the embodied carbon of concrete, with stiffer mixes having lower carbon footprints. However, this study has shown that stiff concrete mixes may be less durable and more susceptible to improper curing. This may be explained by the lower overall water contents within the stiff mixes, and therefore the greater impact of surface water evaporation.udThe effect of changes in the degree of saturation showed the deleterious effects of improper curing, with the saturated, ambient cured samples all exhibiting lower strengths than the equivalent ideally cured samples. The large capillary pores developed due to improper curing was seen with lower calcium hydroxide contents. The reduced hydration products obtained support the result that lower degree of hydration was produced due to improper curing since the hydration of cement cannot continues in the dry environment.udThis study confirms the need for good site practice, and shows that embodied carbon should not be the only factor when considering the environmental performance of concrete. Rather, durability and whole life performance should also be considered.
机译:由于其良好的性能和易于获得的性能,混凝土的使用逐年增加。对混凝土的需求将继续增长,并且在未来许多年中,它将仍然是世界上最重要的建筑材料。但是,使用波特兰水泥混凝土会烧毁环境,因此,在减少建筑碳足迹的过程中,人们广泛关注利用废物和工业副产品来最大程度地减少波特兰水泥(PC)的消耗。水泥工业越来越多地使用粉煤灰等添加剂。 ud文献已经建立了粉煤灰作为硅酸盐水泥的部分替代品的用途,以提高后期强度并显着提高耐久性。但是,这些粘合剂的水合速度较慢,因此合适的固化条件变得更为重要。理想情况下,混凝土的耐久性不应该受到关注。应该预料到一定程度的风化,但是不正确的浇筑程序会导致劣化早于预期。此外,由于无法立即看到耐久性问题,因此需要对不适当的混凝土养护的影响进行一些评估。 ud这项研究涉及使用CEM I或CEM I掺混料(掺有30%的粉煤灰)制备的混凝土,以研究混凝土的耐久性。固化不当的影响。根据抗压强度,干燥收缩,运输性能和抗碳化性评价性能。通过TGA,XRD和SEM对糊状样品进行表征,以跟踪水合和微结构的发展。同样,由于已知饱和度会影响混凝土的抗压强度,并且在环境条件下固化会导致混凝土饱和度的变化,因此工作检查了饱和度对抗压强度的影响。以便正确理解不正确固化的影响。不正确的固化会导致压缩强度的降低和干燥收缩率的增加。吸附度和渗透率值增加。这是由于随着水从混凝土表面蒸发,水泥水化程度降低。固化不当对耐碳化性的影响表明,样品固化不当会比理想固化的碳酸盐更多。这项研究表明,对吸附性和渗透性的影响远大于对抗压强度的影响,这对混凝土的长期耐久性产生了影响。 ud含有30%粉煤灰的复合水泥显示出与CEM I混凝土相当的强度,并且理想地固化后,可改善运输性能。粉煤灰的添加减少了干燥收缩。但是固化不当会导致性能下降。与同等的CEM I混合相比,不适当的固化会更大程度地降低强度。但是,吸附性和渗透性受到的影响最大。这是由于降低了水泥的水合度,从而阻止了粉煤灰和硅酸盐之间的火山灰反应。同样,在未固化的粉煤灰样品上可以看到较高的碳化深度。 ud低强度混凝土本来就具有较高的孔隙率,与高强度混凝土相比,受不适当固化的影响更大。据推测,这是由于水易于从多孔性更高的基质表面蒸发的缘故。而且,已经发现混凝土的可加工性是可以帮助减少混凝土的内含碳的因素,其中较硬的混合物具有较低的碳足迹。但是,这项研究表明,坚硬的混凝土混合物可能不那么耐用,并且更容易受到不当固化的影响。硬质混合物中的总含水量较低,因此对地表水蒸发的影响更大。 ud饱和度变化的影响表明,对于饱和,环境固化的样品,固化不当的有害影响与同等的理想固化样品相比,它们的强度都较低。观察到由于固化不当而形成的大毛细孔,氢氧化钙含量较低。减少的水合产物支持了以下结果:由于固化不当而导致的水合度降低,因为水泥的水合作用无法在干燥的环境中继续进行。 ud这项研究证实了良好的现场实践的必要性,并表明不应将含碳量降低。考虑混凝土环境性能的唯一因素。相反,还应考虑耐用性和整个使用寿命。

著录项

  • 作者

    Idowu Olusola Ige;

  • 作者单位
  • 年度 2017
  • 总页数
  • 原文格式 PDF
  • 正文语种
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号