Abstract
When the problem of the reaction force under the receiver structure is complicated, the existing force-based transfer path analysis method is not suitable for its analysis. Therefore, an improved reaction force transfer path analysis method is proposed in this paper. In the transfer path analysis method based on the modal superposition method, the penalty function method is introduced, and the path contribution of the receiving end reaction force is evaluated by analyzing the displacement response of the connection between the transfer path and the receiving end. A simulation analysis of a satellite refrigeration module vibration isolation device designed by the research group identified the main factors affecting the vibration isolation efficiency of the vibration isolation ring, and provided guidance for subsequent further optimization. The device was tested and analyzed by building an experimental platform, and the obtained simulation data fit well with the test data. These conclusions further show that the proposed analysis method can more accurately and conveniently analyze the path contribution of the receiving end reaction force under specific working conditions. This method is suitable for analyzing the transfer path of the reaction force at the receiving end in the design stage.
Funder
State Key Laboratory of Robotics
National Natural Science Foundation of China
Liao Ning Revitalization Talents Program
Natural Science Foundation of Liaoning Province
Chinese Academy of Science Youth Innovation Promotion Association
Development Fund of Space Automation Technology Laboratory, SIA, CAS
Reference27 articles.
1. Path Contribution Analysis of Vibration Transfer Path Systems;Zhao;Math. Probl. Eng.,2019
2. Component Mode Synthesis Methods for a Body-in-White Noise and Vibration Analysis;Vizzini;Proc. Inst. Mech. Eng. Part D J. Automob. Eng.,2017
3. The Discomfort Model of the Micro Commercial Vehicles Interior Noise Based on the Sound Quality Analyses;Li;Appl. Acoust.,2018
4. Adaptive Feedback Suppression of Unknown Periodic Components of Acoustic Noises with Time-Varying Characteristics;Jafari;J. Vib. Control,2017
5. General Framework for Transfer Path Analysis: History, Theory and Classification of Techniques;Rixen;Mech. Syst. Signal Process.,2016