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体外预应力UHPC节段梁抗弯性能试验研究
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Experimental Study on Flexural Behavior of Precast Segmental UHPC Beams with External Tendons
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    为研究体外预应力胶接缝UHPC节段梁的抗弯性能,完成了3根体外预应力UHPC梁的四点弯曲模型试验,包括一根整体梁和两根节段梁,获得了试件的破坏模式、荷载-挠度曲线和接缝张开情况等主要试验结果,胶接缝UHPC节段梁由环氧树脂胶层破坏导致接缝张开,与胶接缝NC节段梁由接缝附近NC破坏导致有所不同. 考虑截面预压应力和环氧树脂弯拉强度的作用,提出了胶接缝UHPC节段梁的接缝张开弯矩计算公式,计算结果与试验结果误差小于1%,吻合良好. 为准确计算体外预应力UHPC节段梁的抗弯承载能力,将UHPC节段梁的各节段简化为杆、接缝简化为弹簧铰,提出了杆-弹簧铰简化模型. 基于该模型,采用解析法推导了体外预应力筋的应力变化和二次效应的计算公式,预应力筋应力的理论值与试验值误差小于2.3%,吻合良好. 考虑到节段梁接缝张开的不确定性,提出了抗弯承载能力域的概念,即不同接缝张开情况下结构抗弯承载能力的包络范围,抗弯承载能力域的下限值与试验值误差小于6%,建议以下限值作为结构抗弯承载能力的参考值. 上述方法可丰富体外预应力胶接缝UHPC节段梁接缝张开弯矩和结构抗弯承载能力的计算理论.

    Abstract:

    In order to study the flexural behavior of epoxy-joint segmental ultra-high performance concrete (UHPC) beams with external tendons, four-point bending experiments were completed for three UHPC beams with external tendons, including one monolithic beam and two segmental beams, and the main results such as the failure modes, load-deflection relationship and joint opening of the specimens were obtained. The epoxy-joint segmental UHPC beams mainly failed due to the damage of the epoxy as the joint was opened, which is different from the epoxy-joint segmental NC beams where the failure usually occurs in the NC near the joint. Considering the sectional pre-compression stress and the flexural tensile strength of epoxy, the calculation formula of the joint opening moment was proposed, and the difference between the calculation result and the experimental result was less than 1%, which was in good agreement. In order to accurately calculate the flexural capacity of segmental UHPC beams with external tendons, the Rod-Spring Hinge model that simplified the segments as rods and assumed the joints as spring hinges was proposed. Based on this model, the analytical method was used to derive the calculation formulae of stress variation and the secondary effect of external tendons. The difference between the theoretical and experimental values of tendon stress was less than 2.3%, which was in good agreement. Considering the uncertainty of segmental beams’ joint opening, a concept of the flexural capacity domain was proposed, i.e. the envelope range of structural flexural capacity under different joint opening conditions. The difference between the lower limit of the flexural capacity domain and the experimental values was less than 6%, so the lower limit is suggested as the reference value of the structural flexural capacity in a safe way. The above method can enrich the theory of calculating joint opening moment and structural flexural capacity for the epoxy-joint segmental UHPC beams with external tendons.

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李立峰 ?,毛佳豪 ,叶萌 ,杨深 ,房宇超 .体外预应力UHPC节段梁抗弯性能试验研究[J].湖南大学学报:自然科学版,2022,49(11):67~76

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  • 在线发布日期: 2022-12-12
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