Publisher DOI: 10.3390/vibration9040065
Title: Parametric design and experimental characterization of additively manufactured vibration isolators for aircraft cabin applications
Language: English
Authors: Knorr, Martin  
Chodvadiya, Ashish  
Plaumann, Benedikt  
Tews, Tjerk 
Editor: Wang, Xu 
Keywords: additive manufacturing; vibration isolators; aircraft cabin; structure-borne noise
Issue Date: 1-Oct-2026
Publisher: MDPI
Journal or Series Name: Vibration 
Volume: 9
Issue: 4
Project: Verbundvorhaben: ENTIRETY - Engineered TailoREd TranquilitY; Teilvorhaben: KoKoVIP - Konzepte für eine komfortable und effiziente VIP-Flugzeugkabine 
Abstract: 
Structure-borne vibration transmitted through mechanical interfaces is an important contributor to aircraft cabin noise, while conventional isolators offer limited flexibility for adapting stiffness to application-specific requirements. This study investigates additive manufacturing as an enabler for parameterized vibration isolators, linking application requirements, design principles, simulation, manufacturing, and experimental assessment. Seven isolator design variants were investigated: four fused deposition modeling (FDM)-based and three stereolithography (SLA)-based design variants. Four TPU hardness grades were explored within the FDM-based variants as a separate material dimension; one grade did not yield specimens suitable for dynamic characterization. Finite element analysis was used for pre-screening, followed by axial transmissibility measurements on an electrodynamic shaker over 30–2000 Hz against a commercial elastomer isolator as reference. Experimental validation is limited to the axial direction; anisotropic stiffness is targeted by design but was not independently confirmed through radial measurements. Measurements indicate that geometric variations, particularly wall thickness and internal architecture, influence resonance location and isolation-region behavior across the investigated AM variants. A Parametric Design Map links design, process, simulation, and measurement data, demonstrating the feasibility of a measurement-supported parametric development approach for future aircraft cabin isolator applications.
URI: https://hdl.handle.net/20.500.12738/20195
ISSN: 2571-631X
Review status: This version was peer reviewed (peer review)
Institute: Fakultät Luftfahrt- und Fahrzeugsysteme 
Forschungs- und Transferzentrum Future Mobility and Acoustics 
Type: Article
Funded by: Bundesministerium für Wirtschaft und Energie 
Appears in Collections:Publications without full text

Show full item record

Google ScholarTM

Check

HAW Katalog

Check

Add Files to Item

Note about this record


This item is licensed under a Creative Commons License Creative Commons