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Damage and failure modes of railway prestressed concrete sleepers with holes/web openings subject to impact loading conditions

机译:带有孔/腹板开口的铁路预应力混凝土轨枕在冲击载荷条件下的破坏和破坏模式

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Prestressed concrete sleepers are essential to the structural integrity of railway track structures, redistributing wheel loads from the rails to underlying ballast bed while securing rail gauges for safe train traffics. In practice, drilled holes or web openings are usually generated ad hoc in sleepers to enable signalling equipment and cables at a construction site. These holes and web openings could however affect the structural integrity of sleepers, especially when they are exposed to impact loading. In fact, statistically, 15-25% of dynamic loading conditions are of transience and high-intensity by the nature of wheel-rail interaction over irregularities. This study is thus the world first to rigorously investigate the impact behaviours of railway sleepers with hole and web openings, which is critical to railway safety and reliability. In this study, three-dimensional finite element modelling using. ABAQUS Explicit is used to comprehensively design and analyse the behaviour of prestressed concrete sleepers with various types of holes and web openings upon impact loading. Two different modelling techniques including concrete damaged plasticity model and brittle cracking model are also exercised to aid in this study. The results obtained show that the brittle cracking model provides better damage results as it can illustrate crack propagation very well until reaching the failure mode under impact loading. The findings illustrate a pathway to use brittle cracking model instead of concrete damaged plasticity model for dynamic impact analysis. Moreover, the outcome of this study will provide a better and new insight into the influences of holes and web openings on sleepers' failure modes under impact loading so that appropriate guidance can be proposed to rail and track engineers in order to generate holes and web openings ad hoc in prestressed concrete sleepers without compromising their structural performance.
机译:预应力混凝土轨枕对于铁路轨道结构的结构完整性至关重要,可将车轮载荷从轨道重新分配到下方的道ast床,同时确保轨道规的安全,以确保火车的安全通行。在实践中,通常在轨枕上临时产生钻孔或腹板开口,以使信号设备和电缆在建筑工地可用。但是,这些孔和腹板开口可能会影响轨枕的结构完整性,尤其是当它们承受冲击载荷时。实际上,从统计上讲,由于轮轨相互作用对不规则现象的影响,15-25%的动态载荷条件是瞬态的和高强度的。因此,这项研究是世界上第一个严格研究带有孔和腹板开口的铁路轨枕的冲击行为,这对铁路安全性和可靠性至关重要。在本研究中,使用三维有限元建模。 ABAQUS Explicit用于全面设计和分析在冲击载荷下具有各种类型的孔和腹板开口的预应力混凝土轨枕的性能。还运用了两种不同的建模技术,包括混凝土破坏塑性模型和脆性裂纹模型,以帮助这项研究。所得结果表明,脆性裂纹模型提供了更好的损伤结果,因为它可以很好地说明裂纹扩展,直到在冲击载荷下达到破坏模式为止。研究结果说明了使用脆性裂纹模型代替混凝土破损塑性模型进行动态影响分析的途径。此外,这项研究的结果将为冲击载荷作用下孔和腹板开口对轨枕失效模式的影响提供更好的新见解,以便可以向铁路和轨道工程师建议适当的指导,以产生孔和腹板开口在不影响其结构性能的前提下,专门用于预应力混凝土轨枕。

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