...
首页> 外文期刊>Construction and Building Materials >Experimental investigation of thermal pore pressure in reinforced C80 high performance concrete slabs at elevated temperatures
【24h】

Experimental investigation of thermal pore pressure in reinforced C80 high performance concrete slabs at elevated temperatures

机译:升高温度加固C80高性能混凝土板热孔隙压力的实验研究

获取原文
获取原文并翻译 | 示例
           

摘要

Based on the pore pressure test of the cylindrical specimens at high temperatures, the pore pressure in the reinforced slabs (390 (L) x 390 (W) x 120 (H) mm) made of high strength concrete and high performance concrete (HSC/HPC) exposed to elevated temperatures was studied, and the effects of elevated temperatures and heating duration on the pore pressure in heated HSC/HPC were presented. Four types of slabs made of C80 HPC including plain HPC slabs (HPCS), plain rebar-reinforced HPC slabs (RHPCS), PP fiber-reinforced HPC slabs (PPHPCS), rebar-PP fiber-reinforced HPC slabs (RPPHPCS) were tested. The pore pressure results indicate that the heating rate of the concrete slabs gradually decreases with increase of the depth from the heated surface. The 50 mm depth in slabs may be a "moisture clog", which is consistent with the relevant numerical results. Comparison with tensile strength shows that the pore pressure is not the only cause of spalling. According to few related reports, studies on the effects of the rebar mesh on the pore pressure and spalling of slabs have showed that spalling in RHPCS is not as severe as that in HPCS at high temperatures, but the pore pressure of rebar-reinforced concrete slabs is greater compared to the plain concrete slabs. Adding PP fibers can effectively prevent the occurrence of spalling and reduce the pore pressure in the heated slabs. It was determined that the rebar mesh and PP fibers reduce the occurrence of spalling, which provides ideas and test data for improving the fire resistance (anti-spalling) of HSC/HPC. (C) 2020 Elsevier Ltd. All rights reserved.
机译:基于高温下圆柱形样品的孔隙压力试验,加强板中的孔隙压力(390(l)×390(w)×120(h)mm)由高强度混凝土和高性能混凝土制成(HSC /研究了暴露于升高温度的HPC,提出了升高的温度和加热持续时间对加热HSC / HPC孔隙压力的影响。用普通HPC板(HPC),普通钢筋增强HPC板(RHPC),PP纤维增强HPC板(PPHPC),螺旋 - PP纤维增强的HPC板(RPPHPC),由普通HPC板(HPC),普通钢筋增强HPC板(RPPC)制成的四种类型的板坯。孔隙压力结果表明混凝土板的加热速率随着来自加热表面的深度的增加而逐渐降低。板坯中的50毫米深度可以是“湿度堵塞”,这与相关的数值结果一致。与拉伸强度的比较表明孔隙压力不是剥落的唯一原因。根据有关的相关报告,关于钢筋网格对孔隙压力和板坯剥落的影响表明,RHPC中的剥落并不像HPC在高温下的严重,而是钢筋泛燃混凝土板的孔隙压力与普通混凝土板相比更大。添加PP纤维可以有效地防止出现剥落并降低加热板中的孔隙压力。确定钢筋网元和PP光纤减少了剥落的发生,这提供了改善HSC / HPC防火(抗剥落)的思路和测试数据。 (c)2020 elestvier有限公司保留所有权利。

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