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Use of NDT Inspection Data to Improve Rail Damage Prediction Models

机译:使用NDT检测数据来改善轨道损伤预测模型

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Infrastructure managers (IMs) endeavour to eliminate rail defects at an early stage since they impact on safety and quality of operation and increase system costs. London Underground (LUL) uses several non-destructive testing (NDT) techniques in rail inspection to detect the emerging defects and monitor the growth of previously recorded defects. This task mainly aims to prioritise maintenance and renewal activities and record their completion. However, when the high traffic demand and limited maintenance periods are considered, these requirements bring additional pressures to the maintenance team. To optimise maintenance planning, sufficient and reliable field data along with accurate damage prediction are required. Recent developments in NDT technology has seen the introduction of devices to measure crack depth which is a key parameter in the assessment of crack severity and rail life. Therefore, contrary to previous research which mainly utilised observations of rail surface condition, the use of new NDT techniques can support the development and validation of new rail damage models which will help to improve maintenance planning and move to condition-based maintenance strategy.
机译:基础设施管理人员(IMS)努力消除早期阶段的轨道缺陷,因为它们会影响运行的安全和质量并提高系统成本。伦敦地下(LUL)使用轨道检查中的几种无损检测(NDT)技术,以检测新出现的缺陷并监测先前记录的缺陷的生长。这项任务主要旨在优先考虑维护和更新活动并记录其完成。但是,当考虑高的交通需求和有限的维护期时,这些要求为维护团队带来了额外的压力。为了优化维护规划,需要足够和可靠的现场数据以及精确的损坏预测。 NDT技术的最新进展已经看过,引入设备以测量裂缝深度,这是评估破裂严重程度和铁路寿命的关键参数。因此,与前面的研究相反,主要使用轨道表面条件的观察,使用新的NDT技术可以支持新的轨道损坏模型的开发和验证,这将有助于改善维护规划并转向基于条件的维护策略。

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