Influence of cavity partition on the damping performance of additively manufactured particle dampers
Author:
Funder
JST
JSPS
Publisher
Elsevier BV
Reference86 articles.
1. Via non-obstructive particle damping technique;Panossian;J. Vib. Acoust.,1992
2. A review of particle damping modeling and testing;Gagnon;J. Sound Vib.,2019
3. Particle impact dampers: past, present, and future;Lu;Struct. Control. Health Monit.,2018
4. Sound reduction at a target point inside an enclosed cavity using particle dampers;Hu;J. Sound Vib.,2016
5. Partial filling of a honeycomb structure by granular materials for vibration and noise reduction;Koch;J. Sound Vib.,2017
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