GFRP管-型钢混凝土悬臂构件侧向撞击动力响应及机理分析

DYNAMIC RESPONSE AND MECHANISM ANALYSIS OF GFRP TUBE CONCRETE-ENCASED STEEL CANTILEVER MEMBERS UNDER TRANSVERSE IMPACT

  • 摘要: 为研究低速撞击荷载作用下GFRP管-型钢混凝土悬臂构件的动态响应,该研究基于有限元方法建立数值模型,分析了构件的组合效应特征、破坏模式及内力演化规律。研究结果表明:GFRP管、型钢与混凝土三者之间能够形成有效的协同工作机制,其组合效应显著提升了构件的整体抗冲击性能与能量耗散能力。撞击位置是影响破坏模式的关键因素,随着撞击位置由固定端向构件中部移动,构件由剪切破坏转变为弯曲破坏。内力分析表明:固定端截面是构件的最不利控制截面,而惯性效应在撞击过程中表现为抵抗与增强冲击荷载的交替作用。

     

    Abstract: To investigate the dynamic response of GFRP tube concrete-encased steel (GTCES) cantilever members under low-velocity impact loadings, numerical models were established by the base of the finite element method. The combination behavior, failure modes, and the internal force evolution of members were analyzed. The analysis results indicate that the GFRP tube, the steel and, the concrete form an efficient synergistic mechanism, with the combination effect significantly enhancing the overall impact resistance and energy dissipation capacity of the members. The impact location is a key factor governing the failure mode, as the impact location moves from the fixed end towards the mid-span, the failure mode transitions from shearing failure to flexural failure. The internal force analysis reveals that the fixed-end section is the critical governing section, where the inertial effect exhibits an alternating role in resisting and amplifying the impact load during the impact process.

     

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