首页> 外文期刊>Journal of Vibration and Acoustics >Damper Force Characteristics of a Separated Dual-Chamber Single-Rod Type Damper Utilizing an Elastomer Particle Assemblage in the Case of Both Chambers Containing Particles
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Damper Force Characteristics of a Separated Dual-Chamber Single-Rod Type Damper Utilizing an Elastomer Particle Assemblage in the Case of Both Chambers Containing Particles

机译:在含有颗粒的两个腔室的情况下,利用弹性体粒子组件的分离双室单杆式阻尼器的阻尼力特性

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Particle dampers that use soft/hard particles are attracting attention as a solution to problems such as oil leakage of oil dampers and the temperature dependence of their characteristics. Particle dampers effectively attenuate vibration using the friction and inelastic normal collisions generated between particles or between particles and walls. Here, the effects of the packing fraction of particles, the vibration frequency, and hardness of the material on the damper force characteristics of a separated dual-chamber single-rod type damper with elastomer particle assemblages were investigated experimentally. The maximal damper force and its hysteresis increased with the packing fraction, the vibration frequency, and the Young's modulus of the particle material Numerical simulations using the discrete element method (DEM) were performed to confirm the behavior of the elastomer particles when they were packed in both chambers. The compressive force distribution and velocity vector diagram of particles in the simulations showed that friction and compression between particles due to particle movement, friction between particles and the chamber walls, and the viscosity of the elastomer particles caused a large hysteresis in the damper force. The maximum damper force is affected by the viscoelastic component force and the friction force in the same proportion, and the hysteresis is dominated by the friction force. The simulation results were confirmed to be in good agreement, both qualitatively and quantitatively, with the experimentally measured damper force characteristics.
机译:使用软/硬颗粒的粒子阻尼器是吸引注意力作为油阻尼器漏油等问题的溶液和其特性的温度依赖性的解决方案。粒子阻尼器有效地使用颗粒之间或颗粒和壁之间产生的摩擦和非弹性正常碰撞有效衰减振动。这里,实验研究了用弹性体粒子组合的分离双室单杆式阻尼器的阻尼力特性对具有弹性体粒子组件的分离的双腔单杆式阻尼器的阻尼力特性的填充部分的效果。利用填料分数,振动频率和使用离散元素法(DEM)的粒料数值模拟的粉刺频率和杨氏模量增加了最大阻尼力和其滞后力,以确认弹性体颗粒的行为填充时两个腔室。模拟中的粒子的压缩力分布和速度矢量图显示,由于颗粒运动,颗粒之间的摩擦和腔室壁的摩擦,并且弹性体颗粒的粘度导致阻尼力的粘度在阻尼力中导致摩擦力和压缩。最大阻尼力受粘弹性分量力和摩擦力相同比例的影响,并且滞后由摩擦力支配。模拟结果被证实与定性和定量的良好一致,具有实验测量的阻尼力特性。

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