您现在的位置:建筑结构>> 期 刊>> 2021年>> 第20期>>正文内容
空心注水铝合金构件的耐火性能试验研究*
颜明强,张泽江
摘 要

(应急管理部四川消防研究所, 成都 610036)

[摘要]铝合金材料具有轻质高强、耐腐蚀性好、可挤压成型、可循环利用等优点,在建筑结构中的应用越来越广泛,但铝合金结构的耐火性能较差。利用自行设计并搭建的铝合金结构注水防火保护实验平台,开展了无保护铝合金构件、注水铝合金构件、通水铝合金构件受火试验。试验结果表明:无防火保护的铝合金空心构件耐火性能极差,在一定荷载作用下极短时间内就发生了屈服;水的存在可提高铝合金空心构件的耐火性能,延缓铝合金构件的失效时间;在火源和水流的共同作用下,火源、铝合金空心构件、水流存在动态的热平衡,水流量对铝合金结构注水防火保护的效果有较大影响,随着流量的增大,冷却控温效果更好。 

[关键词]铝合金;空心结构构件;注水;耐火性能;受火试验

中图分类号:TU352-5,TU395 文献标识码:A文章编号:1002-848X(2021)20-0055-05

 

 Experimental study on fire resistance performance of hollow water-filling aluminum alloy member 

YAN  Mingqiang,  ZHANG  Zejiang 

(Sichuan Fire Research Institute of MEM, Chengdu 610036, China) 

Abstract: Aluminum alloy material has the advantages of light weight, high strength, good corrosion resistance, extrusion molding, recycling and so on. It is more and more widely used in building structure, but the fire resistance performance of aluminum alloy structure is poor. Using the self-designed and built water fire protection test platform for aluminum alloy structure, the fire test of unprotected aluminum alloy members, water-filled aluminum alloy members and water-connected aluminum alloy members was carried out. The test results show that the hollow aluminum alloy members without fire protection have very poor fire resistance and yield in a very short time under certain load. The presence of water can improve the fire resistance and delay the failure time of aluminum alloy hollow members. Under the joint action of fire source and water flow, there is a dynamic heat balance of fire source, aluminum alloy hollow member and water flow. The water flow has a great influence on the fire protection effect of water injection for aluminum alloy structure. With the increase of the flow, the cooling temperature control effect is better. 

Keywords:aluminum alloy; hollow structural member; water-filling; fire resistance performance; fire test

 

*国家重点研发计划项目(2018YFC0807602),应急管理部消防救援局科研项目(2018XFGG19),应急管理部四川消防研究所基本科研业务费专项(20178810Z,20208802Z)。

 

 作者简介:颜明强,硕士,助理工程师,Email:yanmingqiang@scfri.cn。

下载地址

    你还没注册?或者没有登录?这篇论文要求至少是本站的注册会员才能阅读!

    如果你还没注册,请赶紧点此注册吧!

    如果你已经注册但还没登录,请赶紧点此登录吧!