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January 24, 2026International Journal of Space Structures0 citations

Configuration research and model practice on six-bar tetrahedral cylindrical tensioned stringed lattice shells

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JFJiangye FuFMFeng MiaoSDShilin Dong

Key Points

  • The study aims to propose and analyze a novel six-bar tetrahedral tensioned stringed cylindrical lattice shell for improved structural performance.
  • Developed a parameterized modeling program with visualization features.
  • Analyzed the configuration and internal force distribution of the lattice shell.
  • Built and tested a tensioned stringed test model with added struts and steel tie rods.
  • Conducted static tests to assess the reliability of the proposed structure.
  • The internal force distribution of the structure was found to be more reasonable compared to traditional designs.
  • The model demonstrated advantages in standardized design and prefabricated construction.
  • Static tests confirmed the reliability of the tensioned stringed model under varying bearing properties.

Abstract

A novel six-bar tetrahedral tensioned stringed cylindrical lattice shell was proposed based on the structural configuration of the six-bar tetrahedral cylindrical lattice shell which can be assembled by rhombic projection plane six-bar tetrahedral units. A self-balancing structural system is formed with the counterbalance between the horizontal thrust at the support and the tension from the added tensioned stringed part. The internal force distribution of the overall structure is more reasonable. Meanwhile, the advantages of standardized design, industrial production and prefabricated construction are inherited. The configuration of six-bar tetrahedral tensioned stringed cylindrical lattice shell was analyzed. A parameterized modeling program with visualization was developed. Completeness and effectiveness of the parameters were verified. The construction path of the structure was discussed. Based on the test model of six-bar tetrahedral cylindrical lattice shell, a tensioned stringed test model was built by the addition of struts and steel tie rods and the change of bearing properties along span direction from fixed bearing to sliding bearing. Static tests of the model were conducted. Reliability of the structure was verified by the experimental research.

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Cite This Study

Fu et al. (2026) studied this question.

synapsesocial.com/papers/69746126bb9d90c67120afafhttps://doi.org/10.1177/09560599251414045
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