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大跨径刚构桥底板崩裂破坏分析
Failure Analysis on Bottom Plate Crack of Long-span Rigid Frame Bridge
2017年第5期
桥梁工程;预应力混凝土刚构桥;弹塑性分析;底板崩裂;径向力;Abaqus有限元;施工监控
Bridge engineering; Prestressed concrete continuous rigid frame bridge; Elastic-plastic analysis; Bottom plate crack; Radial for
2017年第5期
1000-4637(2017)05-36-05
张 涛,王有志,尤伟杰,王艺霖,雷海鹏,柳尚斌,刘庆昌,尚 进
山东大学土建与水利学院,济南 250061

张 涛,王有志,尤伟杰,王艺霖,雷海鹏,柳尚斌,刘庆昌,尚 进

张涛,王有志,尤伟杰,等.大跨径刚构桥底板崩裂破坏分析[J].混凝土与水泥制品,2017(5):36-40.

ZHANG T, WANG Y Z, YOU W J,et al.Failure Analysis on Bottom Plate Crack of Long-span Rigid Frame Bridge[J].China Concrete and Cement Products,2017(5):36-40.

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摘 要:考虑了实际施工中钢束定位偏差和折线施工引起的径向力增大,对等效径向力经典计算公式进行了修正。并在此基础上,根据混凝土的弹塑性损伤本构关系,对比分析了径向力增大对底板应力在张拉前后的影响。研究结果表明,施工中引起的径向力增大会导致底板应力分层,使全界面受压底板产生局部破坏性拉应力。底板破坏后截面应力重新分布,计算所得应力分布能较好地吻合现场检测结果。后期加固应考虑应力重分布,同时对箱室底板内侧、腹板内侧也要进行加固。 Abstract: Considering the radial force augmentation induced by the alter of prestressed cable distribution and polygonal stretch construction, the classical equivalent radial force calculating formula is amended. And thereby based on the amended formula, combined with concrete elastic-plastic damage constitutive relations, the practical construction status is simulated to analysis the stress distribution and the influence of stress augmentation in concrete bottom at period of before and after the prestressed cable stretched respectively. The calculating results indicate because of the stratification of the stress in the concrete bottom, destructive tensile stress emerges at the bottom margin, which is supposed to be compressive stress. The development of crack leads to stress redistribution in concrete bottom area, which can be proved sufficiently by the field measurements. Consequently, the radial force augmentation in the construction shall not be ignored and should be considered seriously in design. Reinforcements on the insides of concrete box web and bottom are necessary.
英文名 : Failure Analysis on Bottom Plate Crack of Long-span Rigid Frame Bridge
刊期 : 2017年第5期
关键词 : 桥梁工程;预应力混凝土刚构桥;弹塑性分析;底板崩裂;径向力;Abaqus有限元;施工监控
Key words : Bridge engineering; Prestressed concrete continuous rigid frame bridge; Elastic-plastic analysis; Bottom plate crack; Radial for
刊期 : 2017年第5期
DOI :
文章编号 : 1000-4637(2017)05-36-05
基金项目 :
作者 : 张 涛,王有志,尤伟杰,王艺霖,雷海鹏,柳尚斌,刘庆昌,尚 进
单位 : 山东大学土建与水利学院,济南 250061

张 涛,王有志,尤伟杰,王艺霖,雷海鹏,柳尚斌,刘庆昌,尚 进

张涛,王有志,尤伟杰,等.大跨径刚构桥底板崩裂破坏分析[J].混凝土与水泥制品,2017(5):36-40.

ZHANG T, WANG Y Z, YOU W J,et al.Failure Analysis on Bottom Plate Crack of Long-span Rigid Frame Bridge[J].China Concrete and Cement Products,2017(5):36-40.

摘要
参数
结论
参考文献
引用本文

摘   要:考虑了实际施工中钢束定位偏差和折线施工引起的径向力增大,对等效径向力经典计算公式进行了修正。并在此基础上,根据混凝土的弹塑性损伤本构关系,对比分析了径向力增大对底板应力在张拉前后的影响。研究结果表明,施工中引起的径向力增大会导致底板应力分层,使全界面受压底板产生局部破坏性拉应力。底板破坏后截面应力重新分布,计算所得应力分布能较好地吻合现场检测结果。后期加固应考虑应力重分布,同时对箱室底板内侧、腹板内侧也要进行加固。

Abstract: Considering the radial force augmentation induced by the alter of prestressed cable distribution and polygonal stretch construction, the classical equivalent radial force calculating formula is amended. And thereby based on the amended formula, combined with concrete elastic-plastic damage constitutive relations, the practical construction status is simulated to analysis the stress distribution and the influence of stress augmentation in concrete bottom at period of before and after the prestressed cable stretched respectively. The calculating results indicate because of the stratification of the stress in the concrete bottom, destructive tensile stress emerges at the bottom margin, which is supposed to be compressive stress. The development of crack leads to stress redistribution in concrete bottom area, which can be proved sufficiently by the field measurements. Consequently, the radial force augmentation in the construction shall not be ignored and should be considered seriously in design. Reinforcements on the insides of concrete box web and bottom are necessary.

关键词:
桥梁工程;预应力混凝土刚构桥;弹塑性分析;底板崩裂;径向力;Abaqus有限元;施工监控
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(1)设计施工时,箱梁底板束张拉后,顶板预压应力会有所减小,底板压应力变大,腹板会出现较大的压应力,全截面受压,底板压应力较顶板大。
(2)变截面箱梁底板预应力钢束实际施工时采用折线段代替曲线会引起径向力增大,预应力钢束的定位偏差、波纹管上浮也会引起径向力增大,在设计时应充分考虑这种径向力局部变大导致的应力集中。
(3)现场施工时,应变计的埋设位置应设在敏感部位,如相邻施工梁块腹板与顶板相邻处、底板横向跨中预应力钢束下侧。底板束每一个批次张拉都要做到实时监测,有效地预测崩裂事故发生,及时采取措施。
(4)发生箱室外侧底板崩裂时,箱室内侧应采取相应的维修加固措施,以抵抗箱室内底板的压应力。对腹板也要有必要的措施如体外预应力等,减小因开裂引起的预应力损失。
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[2] 冯鹏程,吴游宇,杨耀栓,等.连续刚构桥底板崩裂事故的评析[J].世界桥梁,2006(1):66-69.
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[7] 王甲春,阎培渝.早龄期混凝土结构开裂风险分析[J].应用基础与工程科学学报,2006,14(2):262-267.
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张涛,王有志,尤伟杰,.大跨径刚构桥底板崩裂破坏分析[J].混凝土与水泥制品,2017(5):36-40.

ZHANG T, WANG Y Z, YOU W J,et al.Failure Analysis on Bottom Plate Crack of Long-span Rigid Frame Bridge[J].China Concrete and Cement Products,2017(5):36-40.

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