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Dynamic responses of highway bridge subjected to heavy truck impact

机译:高速公路桥梁受重型卡车冲击的动态响应

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摘要

This study aims to numerically analyze the dynamic responses and damage/failure of bridge substructure during the vehicle-pier collisions, by employing the refined finite element (FE) models of a heavy truck and a simplysupported prototype highway bridge. Firstly, the adopted numerical algorithm and material model parameters to capture both the flexural and shear failures are validated through the simulations of two lateral flexible impactor crash tests. Then, the full-scale FE model of a typical four-span reinforced concrete (RC) bridge with two-pier bents is established, and a high-fidelity heavy truck FE model established previously is improved and further certified by comparisons with the eccentric and aligned full-scale crash test data. Furthermore, a series of numerical simulations are conducted to examine the heavy truck collision process and analyze the failure modes of bridge structure, as well as the parametric influences, including truck mass, impact velocity, and impact angle. Finally, the linear relationships of initial engine momentum, maximal vehicular impact force, 25-ms moving average, sectional force, and lateral displacement are proposed. It indicates that, (i) compared with the *MAT_CONCRETE_DAMAGE_REL3 and *MAT_WINFRITH_CONCRETE, *MAT_ CSCM_CONCRETE can well depict the flexural and shear failure modes of the pier subjected to heavy truck impact in actual accidents; (ii) the ultimate failure of the impacted pier is mainly caused by the impact of the cargo rather than the engine in the heavy truck; (iii) the impact angle significantly amplifies the possibilities of the T-girder falling off and the failure of bent cap, increasing the potential risk of overall collapse of the bridge superstructure.
机译:本研究旨在通过采用重型卡车的精制有限元(FE)模型和简化的原型公路桥,在车辆码头碰撞期间数值分析车辆码头碰撞期间桥梁子结构的动态响应和损坏/失效。首先,通过两种横向柔性撞击器碰撞测试的模拟验证了采用的数值算法和材料模型参数来捕获弯曲和剪切故障。然后,建立了具有双墩距的典型四跨钢筋混凝土(RC)桥的全级FE模型,并通过与偏心和偏心的比较进一步认证了先前建立的高保真重型卡车FE模型。对齐的全尺度崩溃测试数据。此外,进行了一系列数值模拟以检查重型卡车碰撞过程,并分析桥梁结构的故障模式,以及参数影响,包括卡车质量,冲击速度和冲击角。最后,提出了初始发动机动量,最大车辆冲击力,25-ms移动平均,截面力和横向位移的线性关系。它表示,(i)与* mat_concrete_damage_rez3和* mat_winfrith_concrete相比,* mat_cscm_concrete可以很好地描绘码头经受重载体在实际事故中受到影响的弯曲和剪切失效模式; (ii)受影响码头的最终失败主要是由货物的影响而不是重型卡车中的发动机; (iii)冲击角显着放大T梁脱落的可能性,弯曲盖的失败,增加了桥上部结构的整体塌陷的潜在风险。

著录项

  • 来源
    《Engineering Structures》 |2021年第1期|111828.1-111828.22|共22页
  • 作者单位

    Tongji Univ Dept Disaster Mitigat Struct Coll Civil Engn Shanghai 200092 Peoples R China;

    Xian Univ Technol Sch Civil Engn & Architecture Xian 710048 Peoples R China;

    CAEP Inst Syst Engn Mianyang 621900 Sichuan Peoples R China;

    Tongji Univ Dept Disaster Mitigat Struct Coll Civil Engn Shanghai 200092 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Highway bridge; Heavy truck; Collision; RC pier; Numerical simulation;

    机译:公路桥;重型卡车;碰撞;RC码头;数值模拟;
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