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Article

Research on Buckling Failure Test and Prevention Strategy of Boom Structure of Elevating Jet Fire Truck

School of Mechanical and Aerospace Engineering, Jilin University, Changchun 130022, China
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Author to whom correspondence should be addressed.
Symmetry 2026, 18(1), 39; https://doi.org/10.3390/sym18010039
Submission received: 26 November 2025 / Revised: 20 December 2025 / Accepted: 22 December 2025 / Published: 24 December 2025
(This article belongs to the Section F: Engineering and Materials)

Abstract

The purpose of this study is to investigate the buckling behavior and failure mechanism of the boom of large-scale elevating jet fire trucks, so as to provide support for its safety design and service life improvement. In terms of research methods, a combination of double-version control tests and refined finite element simulations was adopted to carry out a systematic study. The research results show that the boom base plate exhibits typical sinusoidal wave buckling deformation when the load coefficient is between 0.45 and 0.5, and the wavelength is highly consistent with the theoretical prediction; under the critical load, the strain amplitude shows a significant nonlinear jump, which confirms the buckling mechanism of the coupling between geometric nonlinearity and material plasticity; under the ultimate load, the structure undergoes local buckling failure, the failure location is in good agreement with the simulation prediction, and the test results are highly consistent with the simulation results within the engineering allowable range, which verifies the reliability and applicability of the model. The research conclusion is the establishment of evaluation criteria for buckling failure of box-type knuckle arms: visible buckling waves appear, and the strain exceeds 40%. Based on this conclusion, optimizing the width-thickness ratio of the plate, strengthening the web constraint and improving the manufacturing process can effectively enhance the anti-buckling performance of the thin-walled box structure.
Keywords: boom buckling; equivalent experiments; high-stress zones; incident prevention; stress simulation boom buckling; equivalent experiments; high-stress zones; incident prevention; stress simulation

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MDPI and ACS Style

Sun, W.; Cheng, K.; Zhao, Y.; Guan, B.; Wu, B.; Zhao, E. Research on Buckling Failure Test and Prevention Strategy of Boom Structure of Elevating Jet Fire Truck. Symmetry 2026, 18, 39. https://doi.org/10.3390/sym18010039

AMA Style

Sun W, Cheng K, Zhao Y, Guan B, Wu B, Zhao E. Research on Buckling Failure Test and Prevention Strategy of Boom Structure of Elevating Jet Fire Truck. Symmetry. 2026; 18(1):39. https://doi.org/10.3390/sym18010039

Chicago/Turabian Style

Sun, Wuhe, Kai Cheng, Yan Zhao, Bowen Guan, Bin Wu, and Erfei Zhao. 2026. "Research on Buckling Failure Test and Prevention Strategy of Boom Structure of Elevating Jet Fire Truck" Symmetry 18, no. 1: 39. https://doi.org/10.3390/sym18010039

APA Style

Sun, W., Cheng, K., Zhao, Y., Guan, B., Wu, B., & Zhao, E. (2026). Research on Buckling Failure Test and Prevention Strategy of Boom Structure of Elevating Jet Fire Truck. Symmetry, 18(1), 39. https://doi.org/10.3390/sym18010039

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