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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >The Effects of Load Location on Dropper Stress in a Catenary System for a High-Speed Railway
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The Effects of Load Location on Dropper Stress in a Catenary System for a High-Speed Railway

机译:负荷位置对高速铁路围网系统滴管应力的影响

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In this paper, the effects of load location on dropper stress are studied. We treat contact wire as a beam element and derive its response equation and then deduce the stress equation of dropper. A computer code based on MATLAB is written to calculate dropper stress using the finite difference method. The results show that there are three stages during the period of the stress changes of dropper, including instant rebound, damped sinusoidal vibration, and bending compression. The shorter the distance away from a load is, the larger the vertical displacement of the dropper is, which results in the corresponding increases of its stress amplitude and the maximum tensile stress. The load location has a significant impact on the stress changes of dropper. Compared to the condition of the load in the middle, the load acting on the edge of contact wire could induce the larger tensile stress when both ends of contact wire are considered as free boundaries. Therefore, it is necessary to add supports at both ends.
机译:在本文中,研究了负载位置对滴管应力的影响。我们将接触线视为光束元件并导出其响应方程,然后推导出滴管的应力方程。使用有限差分法写入基于MATLAB的计算机代码来计算滴管应力。结果表明,滴管的应力变化期间有三个阶段,包括即时反弹,阻尼正弦振动和弯曲压缩。远离载荷的距离较短,滴管的垂直位移越大,这导致其应力幅度和最大拉应力的增加。负载位置对滴管的应力变化具有显着影响。与中间负载的条件相比,当接触线两端被认为是自由边界时,作用在接触线边缘的负荷可以引起更大的拉伸应力。因此,有必要在两端添加支持。

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