首页> 外文OA文献 >Experimental investigations of sandwich panels using high performance concrete thin plates exposed to fire
【2h】

Experimental investigations of sandwich panels using high performance concrete thin plates exposed to fire

机译:采用高性能混凝土薄板暴露在火中的夹层板试验研究

摘要

Structural sandwich panels using thin high performance concrete (HPC) plates offer a possibility to address the modern environmental challenges faced by the construction industry. Fire resistance is a major necessity in structures using HPC. This paper presents experimental studies at elevated temperatures for panels with 30 mm thick plates stiffened by structural ribs, thick insulation layers, and steel shear connecting systems. Parametric variation assessing the role of each component of the sandwich structure was performed on unloaded specimens of reduced size. Full size walls were tested with load. Tests were performed in standard furnaces, following the conditions of REI certification tests. Unloaded specimens successfully passed tests. Loaded specimens met the R and I requirements, failing E due to sustained flaming of the insulation. They exhibited multiple cracking of their exposed plate and one of them experienced heavy heat-induced spalling. Results highlighted insulation shear failure from differential thermal expansion at the interface with concrete. It suggests the existence of a high bond level between the two materials which might allow structural applications at early age. Cracks resulted from buckling and thermal bowing, present in the upper and lower parts of the panel. Shear connectors created stress concentrations leading to local failure. Only ribs were found to have a structural role, the plate being largely negligible and solely protecting the insulation from heat. Performance could be enhanced by using thicker plates (50 mm).
机译:使用薄的高性能混凝土(HPC)板的结构夹心板为解决建筑行业面临的现代环境挑战提供了可能性。耐火性是使用HPC的结构的主要必要条件。本文介绍了在30毫米厚的面板上通过结构肋,厚绝缘层和钢剪力连接系统加固后的高温下的实验研究。在减小尺寸的空载样品上进行了评估三明治结构各组成部分作用的参数变化。全尺寸墙体经过了负载测试。按照REI认证测试的条件,在标准熔炉中进行测试。卸载的样品成功通过测试。加载的样品满足R和I要求,由于绝缘材料持续燃烧而未达到E。它们在裸露的板上表现出多次开裂,其中之一经历了严重的热诱导剥落。结果突出显示了混凝土界面处不同的热膨胀引起的绝缘剪切破坏。这表明两种材料之间存在高键合水平,这可能允许在早期就进行结构应用。面板的上部和下部均会因屈曲和热弯曲而产生裂纹。剪切连接器产生应力集中,导致局部失效。发现仅肋条具有结构作用,该板在很大程度上可忽略不计,并且仅保护绝缘体免受热。使用较厚的板(50毫米)可以提高性能。

著录项

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