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Effect of Differential Subgrade Settlement on Dynamic Performance of High-Speed Vehicle and Double-Block Ballastless Track Coupled System

机译:路基差异沉降对高速车辆和双座无Ball轨道耦合系统动力性能的影响

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Due to the superior integrity and stability, the double-block ballastless track is extremely sensitive to the deterioration of substructure. A detailed model that takes the nonlinear subgrade support into account is proposed based on the theory of vehicle-track coupled dynamics. Effects of differential subgrade settlement on the dynamic performance in terms of the wheel-rail force, vibration accelerations, and the track-subgrade contact force are carried out. Results indicate that the settlement-induced degradation of track geometry and the unevenness of track support significantly exacerbate the wheel-rail interaction. The magnitude of the settlement primarily dictates the impact load which eventually aggravates the dynamic responses. There exists a particular range of settlement wavelength related to the distance between bogie centers of the vehicle, resulting in severe vibration of the system. With respect to the operation quality of the high-speed vehicle, the ride comfort bears the brunt of the differential settlement. Moreover, the contact between the concrete track and the soil subgrade is prone to failure as a result of the inconsistent deformations. During the dynamic load, the unsupported area will be slapped continually, leading to abnormal dynamic response. It may not only impair the instantaneous stability of the system, but also impose risks to the long-term behavior of track components.
机译:由于出色的完整性和稳定性,双块式无ball轨道对子结构的恶化极为敏感。基于车辆-轨道耦合动力学理论,提出了一个考虑非线性路基支护的详细模型。在轮轨力,振动加速度和履带-路基接触力方面,进行了路基差异沉降对动力性能的影响。结果表明,沉降引起的轨道几何形状退化和轨道支撑的不均匀性显着加剧了轮轨相互作用。沉降的大小主要决定了冲击载荷,最终加剧了动力响应。与车辆转向架中心之间的距离有关的沉降波长存在特定范围,导致系统严重振动。关于高速车辆的操作质量,乘坐舒适性是差速器沉降的首当其冲。此外,由于不一致的变形,混凝土轨道和土壤路基之间的接触容易失效。在动态载荷过程中,无支撑的区域将连续打耳光,从而导致异常的动态响应。这不仅会损害系统的瞬时稳定性,而且还会对轨道组件的长期行为造成风险。

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