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Measurement of deformation of the concrete sleepers under different support conditions using non-contact laser speckle imaging sensor

机译:使用非接触式激光散斑成像传感器测量不同支撑条件下混凝土轨枕的变形

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Prestressed concrete sleepers play a significant role in distributing wheel loads from the rails to the ballast layer. Cyclic wheel loads may cause local deterioration of the ballast layer which would affect the support conditions beneath the sleepers. Therefore, understanding the influence of different support conditions on the deformation of sleepers is necessary for maintaining safe railroad operations. In this study, a non-contact and non-destructive laser speckle imaging sensor (LSIS) was developed and successfully applied to investigate the flexural behaviour of concrete sleepers under various support conditions, including "full support", "partial support" and "centre binding". The results show that LSIS was in agreement with foil strain gauges of achieving high-resolution strain measurements with a maximum mean absolute error of 5.41 +/- 3.12 mu epsilon (equivalent to a mean absolute error of 7.15%) as the detection threshold (20 mu epsilon) is exceeded. More than three times change in the negative bending moment was observed at the mid-span of the sleeper as the support condition was changed from "full support" to "centre binding", which indicates the potential risks of voided ballast support and importance of ballast tamping in railway maintenance.
机译:预应力混凝土轨枕在将车轮载荷从铁轨分配到道ast层中起着重要作用。轮的周期性载荷可能会导致压载层的局部变质,从而影响轨枕下方的支撑条件。因此,必须了解不同的支撑条件对轨枕变形的影响,以保持铁路的安全运营。在这项研究中,开发了一种非接触式无损激光散斑成像传感器(LSIS),并成功地用于研究混凝土轨枕在各种支撑条件下的弯曲行为,包括“全支撑”,“部分支撑”和“中心”。捆绑”。结果表明,LSIS与箔片应变仪相符,可实现高分辨率应变测量,最大平均绝对误差为5.41 +/- 3.12με(相当于7.15%的平均绝对误差)作为检测阈值(20亩EPSilon)。当支撑条件从“完全支撑”变为“中心结合”时,在卧铺中部观察到负弯矩的变化超过三倍,这表明压载物支撑失效的潜在风险和压载物的重要性夯实铁路维护。

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