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Research on the Behavior on Axial Tensile Welded Hollow Spherical Joints Exposed to Elevated Temperature

  • 03-08-2024
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Abstract

The research focuses on the axial tensile behavior of welded hollow spherical joints (WHSJs) under elevated temperatures, a critical aspect often overlooked in previous studies. Through a series of experiments and finite element analysis, the authors investigate the load-displacement curves, failure modes, and mechanical properties of WHSJs at various temperatures. Key findings include a significant reduction in load-bearing capacity and initial axial stiffness as temperature increases, with failure modes indicating a more severe impact on structural integrity compared to compression joints. The study also presents a design method for the mechanical behavior of WHSJs subjected to axial tension at elevated temperatures, providing essential data for enhancing the safety and reliability of space structures.

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Title
Research on the Behavior on Axial Tensile Welded Hollow Spherical Joints Exposed to Elevated Temperature
Authors
Xiaobin Qiu
Bingsheng Huang
Zhen Zhang
Haoyu Song
Yusheng Qin
Publication date
03-08-2024
Publisher
Springer US
Published in
Fire Technology / Issue 2/2025
Print ISSN: 0015-2684
Electronic ISSN: 1572-8099
DOI
https://doi.org/10.1007/s10694-024-01618-5
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