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Role of Dynamic Stiffness in Effective Isolation

机译:动态刚度在有效隔离中的作用

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In any machinery, avoiding noise and vibration completely is a difficult task due to the structural dynamic behaviors of components. To safeguard the operator, it is important to best isolate the operator station from NVH environment. Cabin isolation is an important aspect to minimize structure borne noise and tactile vibrations to be transferred into the cabin. Isolators are selected based on the isolation system inertial properties at mounting locations in the operating frequency range interested. The most important assumption to select isolators are that the active side and passive side of the isolators are nearly rigid so impedance mismatch is created for effective isolation. This paper describes the importance of dynamic stiffness of the structures on both the active and passive side for better NVH performance. NVH performance of passive side is evaluated analytically and computationally in terms of tactile vibrations and structure borne noise for various ratios of the dynamic stiffness over isolator stiffness. The isolator selection criterion is also discussed based on rigid body modes, operating frequency range, transmissibility ratio, and kinematic energy distributions.
机译:在任何机器中,由于组件的结构动态行为,避免噪音和振动完全是一项艰巨的任务。为了保护操作员,最重要的是最适合从NVH环境中隔离操作员站。机舱隔离是最大限度地减少结构噪音和触觉振动的重要方面。基于在频率范围内的安装位置处的隔离系统惯性属性选择隔离器。选择隔离器的最重要假设是隔离器的有源侧和无源侧几乎刚性,因此为有效隔离而产生阻抗不匹配。本文介绍了结构在主动和被动侧的动态刚度的重要性,以获得更好的NVH性能。无源侧的NVH性能在触觉振动和结构上进行了分析,计算地评估了动态刚度的各种比率的触觉振动和结构噪声。还基于刚体模式,操作频率范围,传透比和运动能量分布来讨论隔离器选择标准。

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