Design of the prestressed concrete girders in sandaohu middle bridge
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摘要: 對直線配索無粘結預應力混凝土梁截面應變進行了分析,根據極限狀態下截面受壓邊緣混凝土應變分布形式及無粘結預應力鋼束高度處的混凝土應變分析,得出無粘結預應力鋼束極限應力增量的積分表達式,編制了計算程序進行求解,并與21片兩集中力三分點加載實驗梁的實驗結果進行了對比,結果較為吻合;不計梁體彈性區段的混凝土應變時,極限應力增量計算值減少7.5~15.1MPa,占極限應力增量的1.9%~4.5%,可偏安全地予以忽略.根據理論和實驗結果,對標準跨徑25m的三道湖中橋上部結構預應力混凝土箱形主梁進行了設計.Abstract: Strain analysis was performed to the cross sections of prestressed concrete beams with straight line unbonded tendons.Based on the strain distribution calculation of the compression concrete fiber in ultimate state,the concrete strain at the location of the unbonded tendons was integrated to establish an equation group to calculate the ultimate stress increment.A computer program was assembled to solve the equations.To verify the accuracy of the computational method,21 specimens with straight line unbonded tendons were tested to failure by two concentrated loads at 1/3 span.Comparison indicates that the calculated ultimate stress increment had shown excellent consistency with the tested results.When the strain in the elastic area of the beam was neglected,the ultimate stress increment decreased 7.5 to 15.1 MPa,accounting for only 1.9% to 4.5% of the total stress increment,which indicates that the strain in elastic area can be safely neglected.Based on the theoretical and experimental research,the unbonded tendons of the prestressed concrete box-girders in Sandaohu middle bridge were designed.
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Key words:
- integration /
- unbonded /
- prestressed /
- concrete /
- ultimate stress increment
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