为研究温度力作用下无缝线路钢轨的振动及传递特性,基于有限元方法,建立钢轨实体模型,分别对钢轨施加垂向和横向0~2000Hz简谐荷载,从频域角度分析不同温度力下钢轨的垂向和横向振动及传递特性。研究结果表明,随着钢轨温度的升高,钢轨垂向共振和pinned-pinned共振频率及振幅均有所减小;小于钢轨共振频率(300Hz)的范围内,钢轨垂向振动衰减最快,钢轨振动频率越高,沿线路方向传递越远;不论温升还是温降都会减缓钢轨垂向共振的衰减;随着钢轨温度的升高,钢轨横向共振频率有所减小,振幅有所增大;与垂向振动传递相比,温度力作用对钢轨横向振动传递影响较小,仅对横向弯曲共振频率(135Hz)以下频段的振动传递影响较大。
In order to study the vibration and transmission characteristics of the continuous welded rail under the temperature force, a solid element model of rail was established based on the finite element method. The vertical and lateral harmonic loads from 0-2 000 Hz were applied to the rail respectively, and the vertical and lateral vibration and the transmission characteristics of the rail under different temperature force were analyzed in frequency domain. Results show that with the increasing of the rail temperature, both the vertical resonance frequency and the pinnedpinned resonance frequency of the rail were reduced, as well as the resonance amplitude. Less than 300 Hz, which is the resonance frequency of the rail, the vibration attenuation of the rail is the fastest. The higher the vibration frequency of the rail, the farther away it transmits along the direction of the track line. No matter temperature rises or drops, the attenuation of vertical resonance would slow down. In addition, with the increasing of the rail temperature, the lateral resonance frequency of the rail reduces but the lateral resonance amplitude increases. Compared with the vertical vibration transmission, the temperature force has less influence on the transverse vibration transmission, which has a great influence on the bending vibration transmission in the transverse direction below 135 Hz.