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(65m+115m+65m)公路预应力混凝土连续刚构梁桥设计

时间:2020/10/14 11:53:56  作者:  来源:  查看:0  评论:0
内容摘要: rline; text-underline: single;'>  谢97主要参考文献98附录一99附录二116包络图116附录三 实习报告119, 摘    要 设计为总长为245m的公路直线预应力混凝土连续刚...
rline; text-underline: single;'>  97

主要参考文献98

附录一99

附录二116

包络图116

附录三 实习报告119


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设计为总长为245m的公路直线预应力混凝土连续刚构桥,跨径组成为65m+115m+65m,截面形式为单箱单室箱型,墩身为双薄壁柔性墩。设计荷载标准为公路I级汽车荷载。主梁采用挂篮悬臂对称施工。因时间所限,未涉及下部结构(桥墩和基础)、横向预应力及竖向预应力的设计。

根据活载位置的不同,连续刚构桥的断面可能出现正弯矩或负弯矩,因而,要按弯矩变化的幅值布置预应力钢筋。连续刚构桥将连续梁与薄壁墩(柔性)固结而成,既保持了连续梁桥的优点,同时又节省了支座,减少墩与基础的工程量,并改善了结构的水平荷载作用下的受力性能,即各柔性墩按刚度比分配水平力。

参考了大量的工程实例,对结构方面进行了较为详细的分析和研究。横截面采用单箱单室截面,梁高按二次抛物线变化,从支座处最大5.8米到跨中2.5米,顶板厚度为25cm。为了减小施工难度,并结合连续刚构桥的受力特点,底板厚度呈直线线性变化,由支座向跨中减,支座处为0.7m,跨中为0.4m。运用BSAS对结构进行了内力分析,然后对钢筋数量进行估计并配置钢筋,检算主要控制截面的承载能力。绘制结构施工图,包括桥跨布置图、施工程序图等,进行外文翻译,最后编制设计计算说明书及文档整理。

 

【关键词】: 预应力混凝土连续刚构桥;悬臂施工;内力分析;

 

预应力损失;次内力。

Abstract

Design is a prestressing concrete continuing steel bridge, with the total length of 245m of the highwayspans are 65m, 115m, and 65m respectively, the form of the section is single-box single-roomand the piers are flexible double think-wall The standard of the loads is highway one car loads. The main beam of the bridge is constructed symmetrically by Hanging Basket cantilever Because of the time constraint, the design doesn’t contain the lower structure (piers and foundations), horizontal prestressing and vertical prestressing. According to the different position of the live loads, the section of this continuing steel bridge may have positive  structural forces and negative  structural forcestherefore, the arrangement of the prestressing reinforcement should vary in accordance with the change of structural forces. The continuing steel bridge is a combination of continuing beam and double think-wall piers (flexible), and it also changes the structure’s stress compatibility under the level of loads.

      Design is made on the basis of lots of real projects case, so it gives a detailed analysis and study of the structure. The  cross section is in form of  single-box single-room , the height of the beam changes according to the cross-section parabolic from the supports the maximal height is 5.8m to  the inter - Main beamheight of 2.5m, and the thick of the Roof is 22cm. In order to alleviate the difficulties of construction, the thick of the bottom ,combined with the stress feature of continuing steel bridge, changes in linear, reducing from the supports to the  inter - Main beam, the thick of the supports is 0.7m and the inter - Main beam is 0.4m. Upon the basis of the section design, making an analysis of internal forces of the structure by BSASevaluate the amounts of the reinforcement and arrange them accordingly, then check the capability of the main controlling section. Drawingthe structural construction plan, including the arrangement plan of the bridge span, the procedure of construction, etc. then translate them into English ,finally make the design illustration and Microsoft Word.

Key words: prestressing concrete continuing steel bridge;   cantilever construction;    analysis of internal forces;     prestressing lose;    secondary internal forces

1  1

1.1 设计特点1

1.2 受力特点2

1.3 构造特点2

1.3.1 零号块2

1.3.2 横隔板3

1.3.3 合拢段3

2  桥跨总体布置及结构主要尺寸4

2.1  桥跨结构图式及尺寸拟定4

2.1.1 设计技术标准:4

2.1.2 结构图式4

2.1.3 主要尺寸拟定5

2.2  主梁分段与施工阶段的划分6

2.2.1 分段原则6

2.2.2 具体分段6

2.2.3 施工阶段的划分6

3  荷载内力计算8

3.1  恒载内力计算8

3.1.1 计算方法8

3.1.2 计算结果9

3.2  活载内力计算17

3.2.1 横向分布系数的考虑18

3.2.2 活载因子的计算18

3.2.3  设计结果18

4 预应力钢束的估算与布置30

4.1 预应力筋的估算30

4.1.1 预应力筋的估算方法30

4.1.2 预应力筋的估算34

4.1.3  预应力钢束的布置39

4.1.4 截面特性计算41

 

5  预应力损失及有效预应力计算43

5.1 预应力钢筋与管道之间摩擦损失43

5.2 锚具变形、钢筋回缩和接缝压缩损失48

5.3 弹性压缩损失52

5.4 钢筋松驰引起的应力损失55

5.5 混凝土收缩和徐变引起的预应力损失56

5.6 有效预应力值58

6 次内力计算及内力组合59

 6.1 自重徐变次内力计算59

6.2 预加力徐变次内力计算64

6.3 温度次内力计算67

6.4 墩台支座不均匀沉降次内力计算71

6.5 预加力引起的二次力矩计算73

 

7 截面验算76

7.1  内力组合76

7.1.1  荷载和荷载效应76

7.1.2  内力组合76

7.2  承载力极限状态验算76

7.2.1  基本理论81

7.2.2  截面验算82

7.3 正常使用极限状态验算83

7.3.1  使用阶段应力验算90

7.3.2 变形验算91

8.1  混凝土总用量计算93

8.1.1  梁体混凝土(C50)用量计算93

8.1.2  桥面铺装混凝土用量计算94

8.2  钢绞线及锚具总用量计算94

总结与讨论96


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