An Analysis of Longitudinal Vibration for Bogie Vehicle : Effects of the Lowered Stiffness of Rubber Vibration Isolators Used for Fixing Dampers in the Primary Suspension

K. Tanifuji, M. Oya
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Abstract

When the new Shinkansen train, the series 100EC, came into service, lasting longitudinal vibration with a constant frequency arose frequently near the maximum operation speed. The lasting vibration was the first modal vibration excited by vertical track irregularities through the pitching motion of bogie trucks. This paper describes analytical results of the effects of the rubber stiffness on the longitudinal vibration characteristics. The rubber used for fixing the primary damper is a type of vibration isolator acting in series with the damper, and its stiffness must be reduced in order to allow the damper to incline with relative horizontal displacement between the truck frame and the axle box. However, when the stiffness is too low, the damping effect deteriorates. In the realistic range of reduced stiffness, the first modal longitudinal vibration increases with the decreasing stiffness, and when the stiffness is further reduced, the vibration due to truck pitching grows markedly.
转向架车辆纵向振动分析:用于固定主悬架阻尼器的橡胶隔振器刚度降低的影响
新干线100EC系列列车投入运营后,在最高运行速度附近频繁出现持续的恒频纵向振动。持续振动是由转向架车辆的俯仰运动引起的垂直轨道不平引起的第一模态振动。本文描述了橡胶刚度对纵向振动特性影响的分析结果。用于固定主减振器的橡胶是一种与减振器串联作用的隔振器,为了使减振器随卡车车架与轴箱之间的相对水平位移而倾斜,必须降低橡胶的刚度。但当刚度过低时,阻尼效果变差。在减刚度的实际范围内,随着减刚度的减小,第一模态纵向振动增大,当减刚度进一步减小时,汽车俯仰引起的振动明显增大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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