CAI Jian-li, YANG Rong, LIU Xuan, ZOU Peng. Analysis of the Influence of APU Vibration Isolator Stiffness on Interface LoadsJ. Mechanical Research & Application. DOI: 10.16576/j.ISSN.1007-4414.2026.08.015
Citation: CAI Jian-li, YANG Rong, LIU Xuan, ZOU Peng. Analysis of the Influence of APU Vibration Isolator Stiffness on Interface LoadsJ. Mechanical Research & Application. DOI: 10.16576/j.ISSN.1007-4414.2026.08.015

Analysis of the Influence of APU Vibration Isolator Stiffness on Interface Loads

  • Aiming at the problem that the load distribution is affected by the stiffness of the vibration isolators in an APU (Auxiliary Power Unit) mounting system, and to clarify the influence mechanisms and the safety of the design margin, a finite element model of the APU mounting system was established. Using a parametric approach, the effects and variation patterns of the interface loads were investigated separately when the stiffness of the vibration isolators of the rear mounting, the forward vertical link, and the right adapter varied within a certain range. The results indicate that altering the stiffness of the rear mounting has a negligible impact on the load distribution across all interfaces. When modifying the stiffness of the forward vertical link and the right adapter, the interface loads under forward conditions decreased by up to 12.5%, while the lateral load on the right adapter increased by a maximum of 3.54% as stiffness increased. Under lateral conditions, the load on the forward vertical link increases by up to 8%. The research demonstrates that variations in isolator stiffness do not alter the critical load cases, and all load fluctuations remain within the design margins, thereby ensuring the safety of the mounting system. This study elucidates the mechanism through which stiffness variations influence load distribution, providing a theoretical foundation and design guidance for the engineering application of vibration isolators.
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