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Calculation of Tensile Force for Cable-Stayed Buckling Bracket Combined with Temporary Tie Rod Structure of V-Shaped Pier
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1First Engineering Co., Ltd. of China Communications Third Highway Engineering Bureau, Beijing 101304, China;2College of Civil Engineering, Zhejiang University of Technology, Hangzhou, Zhejiang 310014, China;3Wenzhou Xinda Traffic Engineering Testing Co., Ltd., Wenzhou, Zhejiang 325105, China

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U448.23

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    Abstract:

    To solve the problem of excessive tensile stress of the cross-section during the cantilever casting process of high piers with inclined legs, a determination method of tensile force based on the linear programming theory and unstressed state control was proposed. Based on the internal force equilibrium method and the principle of influence matrix, the method optimized the tensile force with “stress control as the primary and alignment control as the auxiliary”. The unstressed state control method was adopted for forward iteration, and the effect of tangential displacement between segments was considered to verify the alignment of the inclined legs. Finally, a calculation process for the tensile force of buckling cables and tie rods that can simultaneously meet the stress and alignment requirements of the V-shaped pier was provided. Taking the main pier construction of a large-span continuous rigid frame bridge with V-shaped piers as the engineering application background, the linear programming theory combined with the unstressed state method was adopted to solve the tensile force for the cable-stayed buckling construction of the V-shaped pier. The variation law of the tensile force of buckling cables/tie rods during construction was analyzed, and the stress and displacement of key cross-sections were analyzed. The results show that the calculated tensile force can effectively ensure that the construction stress and alignment of the inclined legs meet the limit requirements, realizing the dual control of stress and alignment.

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赵晓璐,杨光,刘俊乐,等. V形墩斜拉扣挂式支架联合临时拉杆结构张拉力计算[J]. Journal of China & Foreign Highway,2026,46(3):123-132.
ZHAO Xiaolu, YANG Guang, LIU Junle, et al. Calculation of Tensile Force for Cable-Stayed Buckling Bracket Combined with Temporary Tie Rod Structure of V-Shaped Pier[J]. Journal of China & Foreign Highway,2026,46(3):123-132.

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History
  • Received:January 21,2025
  • Revised:December 28,2025
  • Adopted:
  • Online: June 27,2026
  • Published:
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