首页> 外文期刊>Acta Mechanica Solida Sinica >STEADY-STATE RESPONSE OF A TIMOSHENKO BEAM ON AN ELASTIC HALF-SPACE UNDER A MOVING LOAD
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STEADY-STATE RESPONSE OF A TIMOSHENKO BEAM ON AN ELASTIC HALF-SPACE UNDER A MOVING LOAD

机译:运动载荷作用下弹性半空间上TIMOSHENKO梁的稳态响应

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摘要

By introducing the equivalent stiffness of an elastic half-space interacting with a Timoshenko beam, the displacement solution of the beam resting on an elastic half-space subjected to a moving load is presented. Based on the relative relation of wave velocities of the half-space and the beam, four cases with the combination of different parameters of the half-space and the beam, the system of soft beam and hard half-space, the system of sub-soft beam and hard half-space, the system of sub-hard beam and soft half-space, and the system of hard beam and soft half-space are considered. The critical velocities of the moving load are studied using dispersion curves. It is found that critical velocities of the moving load on the Timoshenko beam depend on the relative relation of wave velocities of the half-space and the beam. The Rayleigh wave velocity in the half-space is always a critical velocity and the response of the system will be infinite when the load velocity reaches it. For the system of soft beam and hard half-space, wave velocities of the beam are also critical velocities. Besides the shear wave velocity of the beam, there is an additional minimum critical velocity for the system of sub-soft beam and hard half-space. While for systems of (sub-) hard beams and soft half-space, wave velocities of the beam are no longer critical ones. Comparison with the Euler-Bernoulli beam shows that the critical velocities and response of the two types of beams are much different for the system of (sub-) soft beam and hard half-space but are similar to each other for the system of (sub-) hard beam and soft half space. The largest displacement of the beam is almost at the location of the load and the displacement along the beam is almost symmetrical if the load velocity is smaller than the minimum critical velocity (the shear wave velocity of the beam for the system of soft beam and hard half-space). The largest displacement of the beam shifts behind the load and the asymmetry of the displacement along the beam increases with the increase of the load velocity due to the damping and wave radiation. The displacement of the beam at the front of the load is very small if the load velocity is larger than the largest wave velocity of the beam and the half space. The results of the present study provide attractive theoretical and practical references for the analysis of ground vibration induced by the high-speed train.
机译:通过引入与Timoshenko梁相互作用的弹性半空间的等效刚度,提出了梁在弹性半空间上承受移动载荷的位移解。根据半空间和梁的波速的相对关系,将半空间和梁的不同参数组合在一起的四种情况,软梁和硬半空间系统,子系统考虑了软梁和硬半空间,亚硬梁和软半空间的系统以及硬梁和软半空间的系统。使用弥散曲线研究了移动载荷的临界速度。发现在蒂莫申科梁上的运动载荷的临界速度取决于半空间和梁的波速的相对关系。半空间中的瑞利波速度始终是临界速度,当负载速度达到该速度时,系统的响应将是无限的。对于软梁和硬半空间系统,梁的波速也是临界速度。除了横梁的剪切波速度外,亚软横梁和硬半空间系统还有一个附加的最小临界速度。对于(子)硬光束和软半空间的系统,光束的波速不再是关键的速度。与Euler-Bernoulli光束的比较表明,两种类型的光束的临界速度和响应在(子)软光束和硬半空间系统中有很大不同,但在(子)系统中却彼此相似。 -)硬光束和软半空间。如果载荷速度小于最小临界速度(对于软梁和硬梁系统,梁的剪切波速度),则梁的最大位移几乎在载荷的位置,并且沿梁的位移几乎是对称的。一半的空间)。梁的最大位移在载荷之后移动,并且由于阻尼和波辐射,沿着梁的位移的不对称性随着载荷速度的增加而增加。如果载荷速度大于梁的最大波速和半空间的速度,则梁在载荷前部的位移非常小。本研究结果为高速列车引起的地面振动分析提供了诱人的理论和实践参考。

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