...
首页> 外文期刊>Construction and Building Materials >Influence of cold weather during casting and curing on the stiffness and strength of concrete
【24h】

Influence of cold weather during casting and curing on the stiffness and strength of concrete

机译:浇铸和养护期间的寒冷天气对混凝土刚度和强度的影响

获取原文
获取原文并翻译 | 示例

摘要

The supposition that casting and curing at near freezing temperatures leads to the loss of stiffness of the hardened concrete and causes microstructure disruption and abnormalities was investigated. The research programme reported here involved 25 concrete slabs, 750 × 750 × 300 mm, which were subjected to various curing regimes in the range of 20 ℃ to 5 ℃. The extent of loss of stiffness and the degree of microcracking were quantified using the Stiffness Damage Test (SDT). This test method has previously been shown by one of the authors to be very effective in quantifying the extent of disruption to the microstructure of concrete caused by various damage mechanisms. In addition to the SDT, the cold-cured concrete was evaluated by the full stress-strain test as well as ultrasonic, dynamic, and petro-graphic methods. Concreting at temperatures near freezing resulted in approximately 20% reduction of the 28 day stiffness and a Damage Index of 5 as determined by the SDT. Cold weather curing resulted in the development of microcracks in the paste and adversely affected the interfacial zone. Storage of the constituents of concrete at near freezing conditions prior to mixing adversely affects the long term stiffness and strength of concrete. The water absorption of hardened concrete increased as a result of cold-curing. The loss of stiffness because of low temperature curing is not remedied by using stiff aggregate such as granite nor by PFA cement replacement.
机译:假设在接近冰点的温度下浇铸和固化会导致硬化混凝土的刚度下降,并导致微观结构破坏和异常。此处报告的研究计划涉及25块750×750×300 mm的混凝土板,它们在20℃至5℃的温度范围内经受了各种养护。刚度的损失程度和微裂纹的程度使用刚度破坏测试(SDT)进行定量。一位作者先前已证明此测试方法在量化由各种损坏机制引起的混凝土微观结构破坏程度方面非常有效。除SDT外,还通过全应力应变测试以及超声,动态和岩相图方法对冷固化混凝土进行了评估。由SDT确定,在接近冰点的温度下凝结会导致28天刚度降低约20%,损坏指数为5。寒冷的天气固化导致糊中微裂纹的发展,并不利地影响界面区域。在混合之前,在接近冷冻条件下将混凝土成分储存会不利地影响混凝土的长期刚度和强度。由于冷固化,硬化混凝土的吸水率增加。不能通过使用坚硬的骨料(例如花岗岩)或通过PFA水泥替代来弥补由于低温固化而导致的刚度损失。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

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