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公路桥梁多功能倾斜栏杆碰撞特性的数值研究

Numerical study on collision characteristics of multifunctional inclined railings on highway bridges

  • 摘要: 针对公路桥梁的行车安全问题,选取大货车为碰撞对象,采用LS-DYNA有限元软件研究了倾斜栏杆的防撞性能,探讨了栏杆倾角、厚度及材料对防护性能的影响规律。结果表明:栏杆倾角对防护能力影响显著,栏杆倾角增加会导致车辆碰撞力的增大,栏杆倾角超过10°时导向功能失效,但栏杆倾角10°仍可有效防护;当栏杆厚度为3 mm或4 mm时,栏杆的导向性能显著降低;铝合金材料因回弹量更大,防护能力优于Q235钢;倾斜栏杆可以有效提升桥梁的抗风性能,但倾角过大会导致防撞性能显著下降;在厚度大于4 mm、栏杆倾角10°的设计参数下,铝合金栏杆展现出较优的性能平衡。

     

    Abstract: To address traffic safety concerns on highway bridge, this study investigated the anti-collision performance of inclined railings using LS-DYNA finite element software, with heavy trucks as the collision subject. The effects of railing inclination angle, thickness, and material on protective performance were systematically analyzed. Results indicate that the inclination angle significantly influences performance: Larger angles increase collision forces, while angles exceeding 10° compromise the railing's guidance function, though a 10° inclination remains effective. Guidance performance deteriorates notably when railing thickness reaches 3 mm or 4 mm. Aluminum alloy railings outperform Q235 steel due to superior rebound deformation, enhancing protection. Although inclined railings effectively improve bridge wind resistance, excessive inclination angles substantially compromise collision protection. Under design parameters of 10° inclination angle and thickness exceeding 4 mm, aluminum alloy railings demonstrate optimal balance between functional requirements.

     

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