1. 浙江大学 土木工程系,杭州,310058
2. 浙江省公路管理局,杭州,310058
纸质出版:2011
移动端阅览
项贻强, 唐国斌, 朱汉华, 等. PC连续箱梁合龙束横向效应[J]. 土木与环境工程学报(中英文), 2011,33(3):25-30.
XIANG Yi-qiang, TANG Guo-bin, ZHU Han-hua, et al. Transverse Effect of Bottom Continuity Tendons in Continuous PC Box Girder[J]. Journal of Civil and Environmental Engineering, 2011, 33(3): 25-30.
项贻强, 唐国斌, 朱汉华, 等. PC连续箱梁合龙束横向效应[J]. 土木与环境工程学报(中英文), 2011,33(3):25-30. DOI: 10.11835/j.issn.1674-4764.2011.03.006.
XIANG Yi-qiang, TANG Guo-bin, ZHU Han-hua, et al. Transverse Effect of Bottom Continuity Tendons in Continuous PC Box Girder[J]. Journal of Civil and Environmental Engineering, 2011, 33(3): 25-30. DOI: 10.11835/j.issn.1674-4764.2011.03.006.
PC连续箱梁合龙束张拉不仅使底板纵向受压
同时在横向产生附加效应;以某跨海大桥为例
对底板合龙束作用机理进行探讨
并通过精细有限元模型
对施工过程中合龙束的横向效应进行分析和参数研究;结果表明
合龙束张拉过程中底板横向应力处于动态变化过程
其横向效应远大于恒载和其它预应力作用结果
同时
合龙束的横向效应对底板的线形、厚度及孔道保护层较为敏感;最后
基于横向框架法
通过引入预应力效应简化系数和孔道修正系数
提出合龙束横向效应的简化计算方法.
Bottom continuity tendons induce transverse additive effect while providing longitudinal compression during the construction of PC box girder. Taking a cross-sea bridge for example
the mechanism of bottom continuity tendon is investigated. The transverse effect and parameters study are conducted through a refined model. It is illustrated that the state of bottom flange is in a dynamic changeable process during the tensioning of bottom continuity tendons
and the transverse effect caused by the tendons is much more than that by dead loading and other prestressing tendons. The transverse effect is more sensitive to alignment and thickness of the bottom flange
as well as concrete cover of the ducts. Finally
based on the simplified frame analysis
the design method is proposed by introducing prestressing effect simplified factor and duct modified factor.
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