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首页> 外文期刊>Chinese Journal of Mechanical Engineering >ANALYSIS OF THERMAL-ELASTIC STRESS OF WHEEL-RAIL IN ROLLING-SLIDING CONTACT
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ANALYSIS OF THERMAL-ELASTIC STRESS OF WHEEL-RAIL IN ROLLING-SLIDING CONTACT

机译:滚动接触中轮轨的热弹性应力分析

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A coupling thermo-mechanical model of wheel/rail in rolling-sliding contact is put forward using finite element method. The normal contact pressure is idealized as the Hertzian distribution, and the tangential force presented by Carter is used. In order to obtain thermal-elastic stress, the thermal-elastic plane stress problem is transformed to an elastic plane stress problem with equivalent fictitious thermal body force and fictitious boundary distributed force. The temperature rise and thermal-elastic stress of wheel and rail in rolling-sliding are analyzed. The non-steady state heat transfer between the contact surfaces of wheel and rail, heat-convection and radiation between the wheel/rail and the ambient are taken into consideration. The influences of the wheel rolling speed and wear rate on friction temperature and thermal-elastic stress are investigated. The results show the following: ① For rolling-sliding case, the thermal stress in the thin layer near the contact patch due to the friction temperature rise is severe. The higher rolling speed leads to the lower friction temperature rise and thermal stress in the wheel; ② For sliding case, the friction temperature and thermal stress of the wheel rise quickly in the initial sliding stage, and then get into a steady state gradually. The expansion of the contact patch, due to material wear, can affect the friction temperature rise and the thermal stress during wear process. The higher wear rate generates lower stress. The results can help understand the influence of friction temperature and thermal-elastic stress on wheel and rail damage.
机译:利用有限元方法提出了轮滑接触中轮轨的热力耦合模型。法向接触压力理想化为赫兹分布,并使用卡特表示的切向力。为了获得热弹性应力,将热弹性平面应力问题转换为具有等效虚拟热体力和虚拟边界分布力的弹性平面应力问题。分析了轮滑过程中轮轨的温升和热弹性应力。考虑到车轮和轨道接触表面之间的非稳态传热,车轮/轨道与周围环境之间的热对流和辐射。研究了车轮滚动速度和磨损率对摩擦温度和热弹性应力的影响。结果表明:①对于滚动滑动的情况,由于摩擦温度升高而导致贴片附近的薄层中的热应力严重。较高的轧制速度导致较低的摩擦温度升高和车轮中的热应力。 ②在滑动情况下,车轮的摩擦温度和热应力在初始滑动阶段迅速上升,然后逐渐进入稳定状态。由于材料磨损,接触片的膨胀会影响磨损过程中的摩擦温度升高和热应力。较高的磨损率产生较低的应力。结果可以帮助理解摩擦温度和热弹性应力对轮轨损坏的影响。

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