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Investigations on the vertical buckling of railway vehicle's anti-climber

机译:对铁路车辆抗登山者垂直屈曲的调查

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From accident investigations it is found that under some unknown conditions the energy absorbing capacity and anti-overriding function of anti-climber are greatly reduced due to the serious vertical buckling. In order to analyse the vertical buckling mechanism of collided anti-climber, a simulation strategy based on the coupling finite element method and multi-body dynamics is proposed in this paper. A numerical model of anti-climber is established and validated with the quasi-static crush test. The simulation results indicate that in some train collisions the maximal overriding speed can increase as large as 1.5 m/s. Under this condition, large constraint force and bending moment are induced and applied on the collided anti-climber, resulting in a serious vertical buckling. Besides that, the initial vertical offset is identified as another important factor. Generally speaking, the buckling degree as well as the deterioration of energy absorption capacity of collided anti-climber becomes more severe with the increase of initial offset. Moreover, when the two factors (initial vertical offset and overriding speed) are coupled together, the crush behaviour of anti-climber is more complex. If the bending moments, which are induced by the initial vertical offset and overriding speed respectively, are in the same direction, the collided anti-climber is buckled seriously. On the other hand, if these bending moments are in the opposite directions, they are counteracted. As a result, the collided anti-climber is buckled less seriously and has more capacity to absorb the collision energy.
机译:从事故调查中发现,由于严重的垂直屈曲,在一些未知条件下,由于严重的垂直弯曲,抗登山者的能量吸收能力和抗升降功能大大降低。为了分析碰撞防登山者的垂直屈曲机制,本文提出了一种基于耦合有限元方法和多体动力学的仿真策略。建立抗登山者的数值模型,并用准静态压碎试验验证。仿真结果表明,在一些火车碰撞中,最大电压速度可以增加大约1.5米/秒。在这种情况下,诱导和施加大约束力和弯矩在碰撞的抗登山者上施加,导致严重的垂直屈曲。除此之外,初始垂直偏移被识别为另一个重要因素。一般来说,随着初始偏移的增加,屈曲度以及碰撞抗爬升剂的能量吸收能力的恶化变得更加严重。此外,当两个因素(初始垂直偏移和升值速度)耦合在一起时,抗登山者的挤压行为更复杂。如果分别由初始垂直偏移和升高速度引起的弯曲矩,则碰撞抗登山者严重弯曲。另一方面,如果这些弯曲的时刻呈相反方向,则抵消。结果,碰撞的抗登山者的严重扣上了,并且具有吸收碰撞能的能力更大。

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