首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >On the coupling of the vertical, lateral and longitudinal wheel-rail interactions at high frequencies and the resulting irregular wear
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On the coupling of the vertical, lateral and longitudinal wheel-rail interactions at high frequencies and the resulting irregular wear

机译:在高频下垂直,横向和纵向轮轨相互作用的耦合和由此产生的不规则磨损

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摘要

A transient FE model of wheelset-rail rolling contact has been developed with ANSYS/Ls-dyna to simulate the high speed running of a free wheelset on a slab track. Applying vertical, lateral and longitudinal vibrations at the passing frequencies of typical short pitch corrugation to the wheelset with no initial lateral shift, it is found that the vertical and lateral wheel-rail interactions are coupled to a large extent, while the longitudinal relatively independent under rolling-sliding and dependent when approaching full-sliding. The resulting irregular wear calculated with implemented wear models of Archard, T gamma and Zobory increases in amplitude with the friction exploitation level, whereas its phase keeps rather stable under rolling-sliding. As full-sliding is approached, the phase shifts greatly in the presence of the vertical or lateral vibration, but not of the longitudinal vibration. Consequently, corrugation initiation from the vertical and lateral vibrations becomes harder if both full-and rolling-sliding wheels pass over.
机译:通过ANSYS / LS-DYNA开发了一个瞬态FE模型,用于ansys / ls-dyna,模拟平板轨道上的自由轮圈的高速运行。在没有初始横向偏移的典型短距波纹的穿过频率的垂直,横向和纵向振动,没有初始横向移位,发现垂直和横向轮轨相互作用在很大程度上耦合,而纵向相对独立接近全滑动时滚动和依赖。由摩擦剥削水平的振幅,Tγ和Zobory的实施磨损模型计算的由所得到的不规则磨损增加,而其相位在滚动滑动下保持相当稳定。作为接近全滑动,相位在垂直或横向振动的情况下大大移位,但不是纵向振动。因此,如果全滚动轮毂遍过的话,从垂直和横向振动的波纹开始变得更难。

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