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Bridge Expansion Joint in Road Transition Curve: Effects Assessment on Heavy Vehicles

机译:道路过渡曲线中的桥梁伸缩缝:重型车辆的影响评估

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Properly-designed road surfaces provide a durable surface on which traffic can pass smoothly and safely. In fact, the main causes that determine the structural decay of the pavement and its parts are the traffic loads. These repeated actions can create undesirable unevennesses on the road surface, which induce vertical accelerations on vehicles, up to hindering contact between pavement and tire, with dangerous consequences on traffic safety. The dynamic actions transmitted by the vehicles depend on these irregularities: often, a bridge expansion joint (BEJ), introducing a necessary discontinuity between different materials, determines from the beginning a geometric irregularity in the running surface. Besides, some structural conditions could emphasize the problem (e.g., local cracking due to the settlement of the subgrade near the abutment or the discontinuity of stiffness due to the presence of different materials). When the BEJ is located in a transition curve, an inevitable vertical irregularity between road and joint can reach values of some centimeters, with serious consequences for the road safety. This paper deals with the analysis of a case study of a BEJ. Several test surveys were performed in order to fully characterize the effects on both vehicles and pavement. The three-dimensional representation of the pavement surface and the acceleration measurements on a heavy test vehicle were performed to analyze the joint behavior under traffic. Finally, a finite element model was implemented to evaluate the stress contribution on vehicle components induced by the vertical irregularities.
机译:正确设计的路面可提供持久的路面,使交通可以顺利,安全地通过。实际上,决定人行道及其各部分结构衰减的主要原因是交通负荷。这些重复的动作会在路面上产生不希望的不平整度,从而引起车辆的垂直加速度,直至阻碍人行道和轮胎之间的接触,从而对交通安全造成危险。车辆传递的动力取决于这些不规则性:通常,桥梁伸缩缝(BEJ)在不同材料之间引入了必要的不连续性,从一开始就确定了行驶表面的几何不规则性。此外,某些结构条件可能会加剧该问题(例如,由于基台附近路基的沉降而导致局部开裂,或者由于存在不同的材料而导致刚度不连续)。当BEJ位于过渡曲线上时,道路和接缝之间不可避免的垂直不平整度可能会达到几厘米,对道路安全造成严重后果。本文涉及对BEJ案例研究的分析。为了全面描述对车辆和人行道的影响,进行了几次测试调查。进行了路面的三维表示和重型测试车辆的加速度测量,以分析交通状况下的关节行为。最后,建立了一个有限元模型来评估由垂直不规则引起的对车辆部件的应力贡献。

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