MODELING AND EXPERIMENTAL CHARACTERIZATION OF VISCOELASTIC 3D PRINTED SPRING/DAMPER SYSTEMS

被引:0
|
作者
Lai, Heather L. [1 ]
Kuang, Cuiyu [1 ]
Nelson, Jared [1 ]
机构
[1] SUNY Coll New Paltz, New Paltz, NY 12561 USA
关键词
RELAXATION;
D O I
暂无
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The development of flexible, viscoelastic materials for consumer 3D printers has provided the opportunity for a wide range of devices with damping behavior such as tuned vibration isolators to be innovatively developed and inexpensively manufactured. However, there is currently little information available about the dynamic behavior of these 3D printed materials necessary for modeling of dynamic behavior prior to print. In order to fully utilize these promising materials, a deeper understanding of the material properties, and the subsequent dynamic behavior is critical. This study evaluates the use of three different types of models: transient response, frequency response and hysteretic response to predict the dynamic behavior of viscoelastic 3D printed materials based on static and dynamic material properties. Models of viscoelastic materials are presented and verified experimentally using two 3D printable materials and two traditional viscoelastic materials. The experimental response of each of the materials shows agreement with the modeled behavior, and underscores the need for improved characterization of the dynamic properties of viscoelastic 3D printable materials.
引用
收藏
页数:8
相关论文
共 50 条
  • [1] Experimental characterization and modeling of the mechanical behavior of brittle 3D printed food
    Jonkers, N.
    van Dommelen, J. A. W.
    Geers, M. G. D.
    [J]. JOURNAL OF FOOD ENGINEERING, 2020, 278
  • [2] Computational and Experimental Characterization of 3D Printed Components by Fused Deposition Modeling
    Pooladvand, Koohyar
    Furlong, Cosme
    [J]. MECHANICS OF ADDITIVE AND ADVANCED MANUFACTURING, VOL 8, 2019, : 87 - 95
  • [3] Experimental characterization of 3D printed cellular structures
    Heiml, Eva
    Hoessinger-Kalteis, Anna
    Major, Zoltan
    [J]. MATERIALS TODAY-PROCEEDINGS, 2022, 62 : 2528 - 2532
  • [4] Experimental characterization and mechanical behavior of 3D printed CFRP
    Bendine, Kouider
    Gibhardt, Dennis
    Fiedler, Bodo
    Backs, Alexander
    [J]. EUROPEAN JOURNAL OF MECHANICS A-SOLIDS, 2022, 94
  • [5] Modeling 3D Printed Check Valves for Microfluidic Systems
    Melvin, Alexa M.
    Roussel, Thomas J., Jr.
    [J]. 2018 IEEE INTERNATIONAL SYMPOSIUM ON SIGNAL PROCESSING AND INFORMATION TECHNOLOGY (ISSPIT), 2018, : 179 - 184
  • [6] Experimental investigation on mechanical characterization of 3D printed PLA produced by fused deposition modeling (FDM)
    Moradi, Mahmoud
    Aminzadeh, Ahmad
    Rahmatabadi, Davood
    Hakimi, Alireza
    [J]. MATERIALS RESEARCH EXPRESS, 2021, 8 (03)
  • [7] A MEMS dynamic mechanical analyzer for in situ viscoelastic characterization of 3D printed nanostructures
    Cayll, David R.
    Ladner, Ian S.
    Cho, Joon Hyong
    Saha, Sourabh K.
    Cullinan, Michael A.
    [J]. JOURNAL OF MICROMECHANICS AND MICROENGINEERING, 2020, 30 (07)
  • [8] Understanding and modeling the plastic deformation of 3D printed concrete based on viscoelastic creep behavior
    Xia, Kailun
    Chen, Yuning
    Chen, Yu
    Jia, Zijian
    Jia, Lutao
    Gao, Yueyi
    Zhang, Yamei
    [J]. ADDITIVE MANUFACTURING, 2024, 84
  • [9] Parameter Optimization for 3D Mass-spring-damper Models
    Wang, Xiuzhong
    Devarajan, Venkat
    [J]. MEDICINE MEETS VIRTUAL REALITY 16: PARALLEL, COMBINATORIAL, CONVERGENT: NEXTMED BY DESIGN, 2008, 132 : 544 - +
  • [10] Spring-Pen: reproduction of any softness with the 3D printed spring
    Tanaka, Kengo
    Ohshima, Taisuke
    Ochiai, Yoichi
    [J]. SIGGRAPH ASIA 2017 POSTERS (SA'17), 2017,