首页> 外文会议>International conference on advances in steel structures >THE ANALYSIS ON MECHANICS PERFORMANCE OF CFRP LAMINA REINFORCE IN MULTI-FUNCTION BRIDGE UNDER HIGH TEMPERATURE ENVIRONMENT
【24h】

THE ANALYSIS ON MECHANICS PERFORMANCE OF CFRP LAMINA REINFORCE IN MULTI-FUNCTION BRIDGE UNDER HIGH TEMPERATURE ENVIRONMENT

机译:高温环境下多功能桥梁中CFRP层板的力学性能分析

获取原文

摘要

The length of Bangabandhu bridge in Bangladesh is 4 800 m, which is a cross section of continuous box girder multi-function bridge, with the highway, railway and power line transiting it. In the influence of the frequent drought and tropical cyclone such as various climate disaster, as the surface temperature stress which lead to the Bangabandhu bridge deck appear longitudinal crack. Grouting epoxy resin on the Bangabandhu bridge is made after the restoration, the preliminary design for the bridge deck crack is to coat with CFRP lamina in transverse in order to constraint the longitudinal cracks development. It is made level up layer, waterproofing, insulating layer and 5 cm thick Matrix Asphalt (SMA) with a wear protection layer and providing corrosion resistant layer. It is the first time so large area CFRP lamina pasted on bridge panel and the construction of Matrix Asphalt layer in the world. In order to research the rationality of the design scheme and durability of new part after reinforcement of CFRP lamina on multifunction box girder-bridge under the environment of high temperature. The effective simulating test is made to study the mechanics performance of CFRP lamina reinforcement on multi-function box girder-bridge under the environment of high temperature according to the design scheme.
机译:孟加拉国邦加班德大桥的长度为4 800 m,是连续箱梁多功能桥梁的横截面,公路,铁路和电力线在此过境。在频繁的干旱和热带气旋(如各种气候灾害)的影响下,导致Bangabandhu桥面的表面温度应力出现纵向裂缝。修复后在Bangabandhu桥上灌浆环氧树脂,桥面板裂缝的初步设计是在横向上覆盖CFRP薄层,以限制纵向裂缝的发展。它由平整层,防水层,绝缘层和5厘米厚的基质沥青(SMA)制成,带有耐磨保护层并提供耐腐蚀层。这是世界上第一次在桥梁面板上粘贴如此大面积的CFRP薄板,并且是Matrix沥青层的构建。为了研究高温环境下多功能箱梁桥上CFRP层板加固后新零件设计方案和耐久性的合理性。根据设计方案,进行了有效的模拟试验,研究了高温环境下多功能箱梁桥上CFRP层板加固的力学性能。

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