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Influence of Temperature on the Longitudinal Cracking in Multipurpose Precast Concrete Sleepers Prior to Their Installation

机译:温度对多功能预制混凝土轨枕安装前纵向裂纹的影响

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摘要

Prestressed monoblock railway sleepers are concrete elements with almost no reinforcement apart from the prestressing wires, which makes them very sensitive to any stress variation that can induce tensile stresses. In recent years, severe longitudinal cracking has been observed in a number of sleepers in hot regions of Spain, even before these elements were put in service. This work studies the problem while considering the thermal variation as the main factor affecting this cracking phenomenon. A non-linear static load-step analysis is applied on a non-linear finite element model to reproduce the problem and, after its experimental validation, the influence of three design parameters of the sleepers are studied: the nature of concrete aggregates, the dowel thickness, and the dowel material. The results show that all these three parameters may have significant influence on the problem, with the dowel material being the most important parameter. When the dowels are made of a material with a high elastic modulus and a high thermal expansion coefficient, the crack opening induced by a realistic thermal variation can reach significant values and result in longitudinal crack propagation. The changes of humidity are not considered in this study because they are beyond the scope of this work.
机译:预应力整体式铁路轨枕是混凝土构件,除了预应力钢丝外几乎没有加强筋,这使它们对可能引起张应力的应力变化非常敏感。近年来,甚至在将这些元件投入使用之前,在西班牙炎热地区的许多轨枕中也观察到严重的纵向裂缝。这项工作是在考虑热变化作为影响这种开裂现象的主要因素的同时研究问题的。对非线性有限元模型进行非线性静载荷-步阶分析以重现该问题,并在其实验验证之后,研究了轨枕的三个设计参数的影响:混凝土骨料的性质,销钉厚度和销钉材料。结果表明,所有这三个参数都可能对该问题产生重大影响,其中销钉材料是最重要的参数。当榫钉由具有高弹性模量和高热膨胀系数的材料制成时,由实际的热变化引起的裂纹开口可以达到显着的值并导致纵向裂纹扩展。本研究未考虑湿度的变化,因为它们超出了本研究的范围。

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