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首页> 外文期刊>Advances in Engineering Software >The effect of the guiding directions of the guiding cylinders of an area ratio modified machine cushion on the capability of suppressing impact and vibration
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The effect of the guiding directions of the guiding cylinders of an area ratio modified machine cushion on the capability of suppressing impact and vibration

机译:面积比改进的机器座垫的导向缸导向方向对冲击和振动抑制能力的影响

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摘要

A machine cushion reduces the impact force and vibration waves from a machine to the ground and vice versa. In this study, we design machine cushions based on the concepts of wave guiding and suppression and with structures called "area ratio modified" (ARM) structures. The guiding direction of the internal guiding cylinders is one major factor that affects the machine cushion's capabilities to absorb impact and suppress vibration. In order to compare and further investigate the machine cushion's capabilities and limitations, we designed a simple, passive machine cushion as well as three ARM machine cushions, each with a different guiding direction of its internal guiding cylinders. Simulation results show that the ARM machine cushion with cylinders guided vertically upward has the best impact suppression capability. The derived dynamic equations and the simulation results obtained can be used also for evaluating the feasibility and limitations of machine cushion design in the future.
机译:机器垫可减少从机器到地面的冲击力和振动波,反之亦然。在这项研究中,我们基于波导和抑制的概念以及称为“面积比修改”(ARM)结构的结构设计了机器缓冲垫。内部导向缸的导向方向是影响机器缓冲垫吸收冲击和抑制振动的能力的主要因素之一。为了比较并进一步研究机器缓冲垫的功能和局限性,我们设计了一个简单的被动机器缓冲垫以及三个ARM机器缓冲垫,每个内部缓冲缸的引导方向都不同。仿真结果表明,气缸垂直向上引导的ARM机器缓冲具有最佳的冲击抑制能力。所推导的动力学方程式和获得的仿真结果也可用于评估未来机器缓冲垫设计的可行性和局限性。

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