Evaluation of the Frequency-Dependent Young’s Modulus and Damping Factor of Rubber from Experiment and Their Implementation in a Finite-Element Analysis

被引:1
|
作者
D. Koblar
M. Boltežar
机构
[1] Domel d.o.o.,Faculty of Mechanical Engineering
[2] University of Ljubljana,undefined
来源
Experimental Techniques | 2016年 / 40卷
关键词
Dynamic Material Properties of Rubber; Young’s Modulus; Damping Factor;
D O I
暂无
中图分类号
学科分类号
摘要
Rubbers are commonly used in industry to reduce vibration transfer and, consequently, reduce structural noise. The vibration transfer through rubber can be modelled with finite elements; however, to achieve satisfactory results it is necessary to know the viscoelastic properties of the rubber. This paper describes the commonly used theory of vibration transmission through rubber modelled as a single-degree-of-freedom (SDOF) system. Three simplified rubber models are used to identify the constant Young’s modulus and damping factor from the measurements of two different rubber specimens, and with the obtained results the theoretical transmissibilities are calculated. The frequency-dependent Young’s modulus and damping factor are also calculated from measurements. The practical use of previous measurements of dynamic material properties is presented in a finite-element analysis, where three different definitions of the dynamic material properties are carried out for four different rubber specimens, which corresponds to 12 analyses. The finite-element analyses are then compared with the measurements, and general guidelines for using dynamic material properties in ANSYS Workbench v.14 are given.
引用
收藏
页码:235 / 244
页数:9
相关论文
共 50 条
  • [21] Young's modulus of polysilicon thin film evaluated by finite element analysis
    Tanaka, Kazuto
    Minoshima, Kohji
    Imoto, Takehiro
    PROGRESSES IN FRACTURE AND STRENGTH OF MATERIALS AND STRUCTURES, 1-4, 2007, 353-358 : 2227 - +
  • [22] A Finite Element Model for the Vibration Analysis of Sandwich Beam with Frequency-Dependent Viscoelastic Material Core
    Huang, Zhicheng
    Wang, Xingguo
    Wu, Nanxing
    Chu, Fulei
    Luo, Jing
    MATERIALS, 2019, 12 (20)
  • [23] Frequency-Dependent Sliding-Mode Control of Galfenol-Driven Unimorph Actuator Based on Finite-Element Model
    Shu, Liang
    Dapino, Marcelo
    Wu, Guichu
    Chen, Dingfang
    IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2016, 63 (02) : 1071 - 1082
  • [24] Effects of bone Young's modulus on finite element analysis in the lateral ankle biomechanics
    Niu, W. X.
    Wang, L. J.
    Feng, T. N.
    Jiang, C. H.
    Fan, Y. B.
    Zhang, M.
    APPLIED BIONICS AND BIOMECHANICS, 2013, 10 (04) : 189 - 195
  • [25] Effects of Young's Modulus on Disc Brake Squeal using Finite Element Analysis
    Belhocine, Ali
    Ghazaly, Nouby M.
    INTERNATIONAL JOURNAL OF ACOUSTICS AND VIBRATION, 2016, 21 (03): : 292 - 300
  • [26] Speed of sound reflects Young's modulus as assessed by microstructural finite element analysis
    van den Bergh, JPW
    van Lenthe, GH
    Hermus, ARMM
    Corstens, FHM
    Smals, AGH
    Huiskes, R
    BONE, 2000, 26 (05) : 519 - 524
  • [27] Evaluation the effect of aspect ratio for Young's modulus of nanobelt using finite element method
    Zheng, H.
    Zheng, X. J.
    Wang, J. S.
    Yu, G. C.
    Li, Y.
    Song, S. T.
    Han, C.
    MATERIALS & DESIGN, 2011, 32 (03) : 1407 - 1413
  • [28] Modeling and analysis of a four-parameter vibration isolator with frequency-dependent damping and its implementation based on GERF
    Wang, Min
    Liao, Songquan
    Peng, Yan
    Ding, Jiheng
    Sun, Yi
    Pu, Huayan
    Xie, Shaorong
    Luo, Jun
    Li, Zhongjie
    Yang, Zhengbao
    SMART MATERIALS AND STRUCTURES, 2023, 32 (07)
  • [29] Implementation of a frequency-dependent impedance boundary model into a room acoustic solver with time-domain finite element method
    Yoshida, Takumi
    Okuzono, Takeshi
    Sakagami, Kimihiro
    ACOUSTICAL SCIENCE AND TECHNOLOGY, 2020, 41 (06) : 819 - 822
  • [30] New Frequency-Dependent Trigonometric Interpolation Functions for the Dynamic Finite Element Analysis of Thin Rectangular Plates
    Jayasinghe, Supun
    Hashemi, Seyed M.
    SHOCK AND VIBRATION, 2018, 2018