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Theoretical analysis of transfer lengths in pretensioned prestressed concrete members

机译:预应力预应力混凝土构件传递长度的理论分析

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摘要

The realistic design of pretensioned prestressed concrete members requires adequate determination of transfer length for prestress forces. The purpose of the present paper is to propose a rational theory, which can evaluate the transfer lengths realistically for arbitrary designed pretensioned members. The theory considers the prestressing steel as a solid cylinder and the surrounding concrete as a hollow cylinder. The compatibility condition is then imposed at the steel-concrete interface with an appropriate equilibrium equation. The possible cracking of surrounding concrete in a radial direction due to expansive pressure after prestress transfer has been considered by employing an appropriate tensile stress-crack width relation. The equilibrium equations are solved for each successive segment in longitudinal direction and the strain buildup curves from the end of pretensioned members are obtained, which provides the basis for the determination of transfer length. Comprehensive tests were conducted to measure the transfer lengths for various design variables, including the concrete strength, strand diameter, cover thickness, and strand spacing. The measured values of transfer lengths were compared with the calculated ones and the comparison indicates that the theoretical prediction exhibits good correlation with test data. The proposed theory allows more realistic prediction of transfer lengths for rational design of actual pretensioned prestressed concrete members.
机译:预应力预应力混凝土构件的实际设计要求充分确定预应力的传递长度。本文的目的是提出一个合理的理论,该理论可以实际评估任意设计的预应力构件的传递长度。该理论将预应力钢视为实心圆柱体,并将周围的混凝土视为空心圆柱体。然后通过适当的平衡方程将相容条件强加于钢-混凝土界面。通过采用适当的拉伸应力-裂纹宽度关系,已经考虑了预应力传递后由于膨胀压力而引起的周围混凝土在径向上可能产生的裂纹。在纵向上求解每个连续段的平衡方程,并获得从预应力构件端部开始的应变累积曲线,这为确定传递长度提供了基础。进行了综合测试,以测量各种设计变量的传递长度,包括混凝土强度,线材直径,覆盖层厚度和线材间距。将传输长度的测量值与计算得出的值进行比较,比较表明理论预测与测试数据具有良好的相关性。所提出的理论为合理设计实际的预应力预应力混凝土构件提供了更为真实的传递长度预测。

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