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Study on Dynamic Characteristics of Resilient Mount Under Preloadopen access

Authors
Park, Sung-JuPark, ByoungjaeLee, Joo-YeobShin, Yun-HoJeong, Chae-LimKim, Sung-JaeKim, Kookhyun
Issue Date
10월-2024
Publisher
MDPI
Keywords
resilient mount; hyperelastic material; driving point dynamic stiffness; Yeoh model; static and dynamic analysis
Citation
MATERIALS, v.17, no.20
Journal Title
MATERIALS
Volume
17
Number
20
URI
https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/10579
DOI
10.3390/ma17205096
ISSN
1996-1944
Abstract
Resilient mounts are essential for anti-vibration and shock absorption applications, making accurate predictions of their static and dynamic behaviors critical for effective design and mechanical performance. This study investigates static and dynamic characteristics of resilient mounts to predict their effects. Tension, compression, and shear tests were performed under quasi-static loading conditions to obtain stress-strain cycle curves. This study includes a review of the Yeoh hyperelastic model, which consists of three parameters, and discusses the calibration of these parameters to describe the hyperelastic material behavior. The parameters were validated through numerical analysis by comparing them with experimental results from quasi-static tests on the resilient mount. The dynamic behavior was further analyzed using modal analysis and frequency response simulations under various preload conditions. Results show that increasing preload significantly shifts the transmissibility curves and resonance peaks to lower frequencies. This study offers valuable insights into static and dynamic characteristics of resilient mounts, contributing to the design and optimization of vibration isolation systems for naval applications.
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