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Dynamic Crack Propagations in Prestressed Concrete Sleepers in Railway Track Systems Subjected to Severe Impact Loads

机译:承受严重冲击载荷的铁路轨道系统中预应力混凝土轨枕的动态裂纹扩展

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Prestressed concrete sleepers (or railroad ties) are the crosstie beam support in railway track systems. They are designed and constructed under flexural constraints in order to carry and transfer the dynamic wheel loads from the rails to the ground. Under perfect wheel and rail conditions, the dynamic loading on railway tracks could be treated as a quasi-static load using a dynamic impact factor. The current design method for the prestressed concrete sleepers taking into account the quasi-static effect is based on allowable stress where crack initiation is not permitted. In reality, the impact events are often detected due to the uncertainties of wheel or rail abnormalities such as flat wheels, dipped rails, etc. These loads are of very high magnitude but short duration. Over the design life span of the prestressed concrete sleepers, there exists the feasibility of extreme and repeated impact loading events. These have led to two proposed limit states for the consideration of structural engineers: ultimate limit states and fatigue limit states. Prestressing techniques have been long used to maintain the high endurance of the sleepers under repeated impact cycles. In spite of the most common use of the prestressed concrete sleepers, their impact behavior and capacity under the repetitions of severe impact loads are unclear. This paper presents the experimental investigation aimed at understanding the dynamic crack propagations in prestressed concrete sleepers in railway track structures under repeated impact loading. The impact forces have been correlated against the probabilistic track force distribution obtained from an Australian heavy haul rail network. The effects of track environment including soft and hard tracks are highlighted in this paper.
机译:预应力混凝土轨枕(或铁路枕木)是铁路轨道系统中的交叉梁支撑。它们是在挠曲约束下设计和构造的,以便将动态车轮载荷从轨道承载和传递到地面。在理想的轮轨条件下,使用动态影响因子可以将铁轨上的动态载荷视为准静态载荷。考虑到准静态效应的预应力混凝土轨枕的当前设计方法是基于不允许出现裂纹的允许应力。实际上,由于车轮或铁轨异常(例如,平轮,浸入式钢轨等)的不确定性,经常会检测到碰撞事件。这些载荷的强度很高,但持续时间很短。在预应力混凝土轨枕的设计寿命中,存在极端和重复冲击荷载事件的可行性。这些导致了两个建议的极限状态供结构工程师考虑:极限极限状态和疲劳极限状态。长期以来,预应力技术一直用于在反复的冲击循环下保持轨枕的高耐久性。尽管最普遍使用预应力混凝土轨枕,但在反复施加严重冲击载荷下其冲击性能和承受能力尚不清楚。本文提出了旨在了解反复冲击荷载下铁路轨道结构中预应力混凝土轨枕动态裂纹扩展的实验研究。冲击力已经与从澳大利亚重载铁路网获得的概率轨道力分布相关。本文重点介绍了包括软磁道和硬磁道在内的磁道环境的影响。

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