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Field Measurement of Wheel-Rail Impact Force at Insulated Rail Joint

机译:绝缘轨接头处轮轨冲击力的现场测量

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When wheels pass over insulated rail joints (IRJs) a vertical impact force is generated. The ability to measure the impact force is valuable as the force signature helps understand the behaviour of the IRJs, in particular their potential for failure. The impact forces are thought to be one of the main factors that cause damage to the IRJ and track components. Study of the deterioration mechanism helps finding new methods to improve the service life of IRJs in track. In this research, the strain-gage-based wheel load detector, for the first time, is employed to measure the wheel-rail contact-impact force at an IRJ in a heavy haul rail line. In this technique, the strain gages are installed within the IRJ assembly without disturbing the structural integrity of IRJ and arranged in a full wheatstone bridge to form a wheel load detector. The instrumented IRJ is first tested and calibrated in the lab and then installed in the field. For comparison purposes, a reference rail section is also instrumented with the same strain gage pattern as the IRJ. In this paper the measurement technique, the process of instrumentation, and tests as well as some typical data obtained from the field and the inferences are presented.
机译:当车轮经过绝缘的轨道接头(IRJ)时,会产生垂直冲击力。测量冲击力的能力很有价值,因为力的签名有助于理解IRJ的行为,尤其是其失效的可能性。冲击力被认为是造成IRJ和履带部件损坏的主要因素之一。对变质机理的研究有助于寻找新的方法来改善轨道IRJ的使用寿命。在这项研究中,首次使用基于应变计的车轮载荷检测器来测量重载铁路线中IRJ处的轮轨接触碰撞力。在这种技术中,将应变计安装在IRJ组件内,而不会影响IRJ的结构完整性,并且将其安装在完整的惠斯通电桥中以形成车轮载荷检测器。仪器化的IRJ首先在实验室中进行测试和校准,然后在现场安装。为了进行比较,还为参考导轨部分配备了与IRJ相同的应变计模式。本文介绍了测量技术,仪器仪表和测试过程,以及从现场和推论中获得的一些典型数据。

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