Parabolic tendons in prestressed concrete - how accurate are equivalent loads?

Q4 Engineering Rakenteiden Mekaniikka Pub Date : 2021-11-15 DOI:10.23998/rm.100697
M. Pajari
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引用次数: 0

Abstract

The mechanical effects of a parabolic tendon can be modeled replacing the tendon by external loads applied to the concrete. The intensity of these loads depends on the prestressing force P and curvature of the tendons. These two factors are also interrelated because the losses of prestress vary with the curvature. The structural analysis can be simplified by approximating that the line load against the tendon, able to maintain the initial parabolic form of the tendon and called equivalent load, is constant, perpendicular to the centroidal axis of the beam and equal to P/R where R is the radius of curvature of the parabola at its vertex. This approximation is one of the key issues in the textbooks but normally not properly justified. In this paper, the mathematical background for the approximation is formulated. Some typical tendon layouts are analyzed to evaluate the approximation error. The error proved to be insignificant for simple beams. For cantilever and continuous beams more accurate methods in the final design are recommended.
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预应力混凝土中的抛物线钢筋束——等效荷载的准确性如何?
抛物型肌腱的力学效应可以用施加在混凝土上的外部载荷代替肌腱来模拟。这些荷载的强度取决于预应力P和肌腱的曲率。这两个因素也是相互关联的,因为预应力损失随曲率的变化而变化。结构分析可以通过近似简化,即对肌腱的线荷载,能够保持肌腱的初始抛物线形式,称为等效荷载,是恒定的,垂直于梁的质心轴,等于P/R,其中R是抛物线在其顶点的曲率半径。这种近似是教科书中的关键问题之一,但通常没有适当的理由。本文给出了近似的数学背景。分析了几种典型的预应力筋布置形式,对逼近误差进行了评价。对于简单梁,这种误差被证明是微不足道的。对于悬臂梁和连续梁,建议在最终设计中采用更精确的方法。
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来源期刊
Rakenteiden Mekaniikka
Rakenteiden Mekaniikka Engineering-Mechanical Engineering
CiteScore
0.50
自引率
0.00%
发文量
2
审稿时长
16 weeks
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