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A combined static-and-dynamics mechanics analysis on the bridge deck pavement

机译:桥面铺装的静力学和动力学分析相结合

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The mechanical performance evaluation on bridge deck pavement has always been a critical issue for pavement engineers since it directly bears the loadings from vehicles and environment. Due to the complex service conditions including composite structure design, massive vehicle loadings, serious environmental conditions, large vibration and large deflection deformation, the service life of bridge pavement structure is usually much shorter than the common pavement structures. To evaluate the pavement structure stress state comprehensively, a combined static-and-dynamics analysis is conducted in this paper, combining with the sites tests in the cross-sea bridge pavement deck in Caofeidian District, China. The finite element software ANSYS is employed to study both the static and dynamics stress of bridge pavement. Simulation results show that the suggested thickness for the upper layer pavement thickness is 3.5 cm-4.5 cm and the lower layer is 5 cm similar to 7 cm. And the suggested modulus for the pavement upper structure is 1600-1900 MPa and 900-1000 MPa for the lower structure. It is found that, along with the approaching of the load, the vertical displacement of each layer of the bridge deck pavement increases, and the vertical displacement decreases with the leaving of load. During the loading cycle, with the increase of speed, the maximum vertical displacement of bridge deck pavement decreases. (C) 2017 Elsevier Ltd. All rights reserved.
机译:桥面铺装的机械性能评估一直是路面工程师的关键问题,因为它直接承受车辆和环境的负荷。由于复杂的服务条件,包括复合结构设计,巨大的车辆载荷,严重的环境条件,大的振动和大的挠曲变形,桥梁路面结构的使用寿命通常比普通路面结构要短得多。为了全面评估路面结构的应力状态,结合曹操店区跨海桥梁路面桥面的现场试验,进行了静动力分析的综合分析。有限元软件ANSYS被用来研究桥面路面的静态和动态应力。仿真结果表明,上层路面厚度的建议厚度为3.5 cm-4.5 cm,下层路面的建议厚度为5 cm,与7 cm相似。路面上部结构的建议模量为1600-1900 MPa,下部结构的建议模量为900-1000 MPa。结果发现,随着载荷的接近,桥面铺装结构每一层的竖向位移增大,而随着载荷的离开,竖向位移减小。在装载周期中,随着速度的增加,桥面铺装的最大垂直位移减小。 (C)2017 Elsevier Ltd.保留所有权利。

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