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再生混凝土结构性能研究最新进展*
王长青
摘 要
(同济大学材料科学与工程博士后流动站,上海 200092)
 
[摘要]重点分析和讨论再生混凝土结构性能,对再生混凝土结构性能研究的最新进展进行了综述。分析了再生混凝土梁的抗弯性能和受剪性能、再生混凝土板的抗弯承载力、再生混凝土柱的承载力、再生混凝土剪力墙和再生混凝土砌块墙体的抗震性能、再生混凝土梁柱节点的基本力学性能和抗震性能;探讨了再生混凝土平面框架在低周反复水平加载下的承载能力、变形能力以及抗震能力;分析讨论了再生混凝土空间框架结构和砌体结构在动力荷载下的动力特性、地震反应、结构延性、地震损伤等。国内外再生混凝土结构性能的研究表明,合理设计施工的再生混凝土结构(构件)基本上能够达到普通混凝土结构(构件)的性能要求,其应用于土木工程中是可行的,可以在抗震设防地区推广和应用。
[关键词]建筑废弃物; 再生骨料; 再生混凝土; 构件性能; 结构性能
中图分类号:TU528.79,TU317.1      文献标识码:A      文章编号:1002-848X(2014)22-0060-07
 
Latest research progress on structural performance of recycled aggregate concrete
Wang Changqing
 (Postdoctoral Mobile Research Station, College of Material Science and Engineering, Tongji University, Shanghai 200092, China)
 
Abstract: The structural performance  of recycled aggregate concrete (RAC) was mainly investigated and analyzed, and the latest research progress on the structural performance of RAC  was reviewed in detail. The flexural and shear performances of RAC beam, flexural bearing capacity of RAC slab, bearing capacity of RAC column, seismic performances of RAC shear wall and RAC masonry wall, basic mechanical property and seismic performance of RAC beam-column joint were analyzed. The bearing capacity, deformability and seismic performance of RAC planar frame under the horizontal low cyclic loading were analyzed. Furthermore, the dynamic properties, the seismic responses, the structural ductility and the seismic damage assessment of RAC spatial frame and block masonry structures under the dynamic loadings were investigated and discussed. The studies on the structural performance of RAC from home and abroad show that RAC structure (member) with proper design and construction can basically meet the structural performance of normal aggregate concrete structure(member) and be used in civil engineering. It is feasible to apply and popularize RAC building in seismic fortification areas.
Keywords: construction and demolition waste; recycled aggregate; recycled aggregate concrete; member performance; structural performance
*中国博士后科学基金资助项目(2014M550247),河南省教育厅科学技术研究重点项目(14B560033)。
作者简介:王长青,博士后,Email:changqingwang@tongji.edu.cn。
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