The influence of friction parameters in a ball-screw energy-harvesting shock absorber

被引:12
|
作者
Bowen, L. [1 ]
Vinolas, J. [1 ]
Olazagoitia, J. L. [1 ]
机构
[1] Univ Antonio Nebrija, DIIA, Madrid, Spain
关键词
Multi-objective optimization techniques; EHSA; Energy harvesting; Electromagnetic shock absorber; Non-linearities; Vehicular dynamics; Ride comfort; SUSPENSION COMPONENTS; SENSITIVITY; PERFORMANCE; DESIGN; MODEL;
D O I
10.1007/s11071-019-04912-y
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Energy-harvesting shock absorbers (EHSAs) have been introduced in the last decade as a viable technology for improving the performance and durability of electric and/or hybrid vehicles. However, in order to gauge the potential that can be obtained from this technology in different environments, the computational models that are used should behave as close to reality as possible. One of the limiting factors in EHSAs, in terms of recoverable energy, is frictional losses between its moving parts. Depending on the friction losses, the dynamics and efficiency of the system will vary. This paper presents a method of identifying the friction parameters in a ball-screw energy-harvesting shock absorber (BS-EHSA) system for subsequent computational simulation. In addition, it shows qualitative and quantitative results of how these friction parameters could affect the comfort and adhesion of the vehicle, as well as the generated power and energy efficiency of the BS-EHSA.
引用
收藏
页码:2241 / 2256
页数:16
相关论文
共 50 条
  • [1] The influence of friction parameters in a ball-screw energy-harvesting shock absorber
    L. Bowen
    J. Vinolas
    J. L. Olazagoitia
    Nonlinear Dynamics, 2019, 96 : 2241 - 2256
  • [2] Design of a Hybrid Energy-Harvesting Shock Absorber
    Xie, Longhan
    Li, Jiehong
    Cai, Mingjing
    PROCEEDINGS OF THE 2015 INTERNATIONAL FORUM ON ENERGY, ENVIRONMENT SCIENCE AND MATERIALS, 2015, 40 : 427 - 431
  • [3] Energy-harvesting shock absorber with a mechanical motion rectifier
    Li, Zhongjie
    Zuo, Lei
    Kuang, Jian
    Luhrs, George
    SMART MATERIALS AND STRUCTURES, 2013, 22 (02)
  • [4] Modeling and Analysis of a Hydraulic Energy-Harvesting Shock Absorber
    Wu, Zhifei
    Xu, Guangzhao
    MATHEMATICAL PROBLEMS IN ENGINEERING, 2020, 2020 (2020)
  • [5] Vehicle Dynamic Analysis for the Ball-Screw Type Energy Harvesting Damper System
    Shin, Seok-san
    Kim, Bong-soeb
    Lee, Dong-won
    Kwon, Seong-jin
    AETA 2016: RECENT ADVANCES IN ELECTRICAL ENGINEERING AND RELATED SCIENCES: THEORY AND APPLICATION, 2017, 415 : 853 - 862
  • [6] Design of a Piezoelectric Energy-Harvesting Shock Absorber System for a Vehicle
    Lee, Hongseok
    Jang, Hongseok
    Park, Jongkyu
    Jeong, Seongsu
    Park, Taegone
    Choi, Sungjoon
    INTEGRATED FERROELECTRICS, 2013, 141 (01) : 32 - 44
  • [7] Modeling and Experiments of a Hydraulic Electromagnetic Energy-Harvesting Shock Absorber
    Guo, Sijing
    Xu, Lin
    Liu, Yilun
    Guo, Xuexun
    Zuo, Lei
    IEEE-ASME TRANSACTIONS ON MECHATRONICS, 2017, 22 (06) : 2684 - 2694
  • [8] MECHANICAL MOTION RECTIFIER BASED ENERGY-HARVESTING SHOCK ABSORBER
    Li, Zhongjie
    Zuo, Lei
    Kuang, Jian
    Luhrs, George
    PROCEEDINGS OF THE ASME INTERNATIONAL DESIGN ENGINEERING TECHNICAL CONFERENCES AND COMPUTERS AND INFORMATION IN ENGINEERING CONFERENCE, VOL 6, 2012, : 595 - 604
  • [9] Kinetic and friction analyses of a preloaded double nut ball-screw
    Wei, Chin-Chung
    Hsu, Tung-Hao
    PROCEEDINGS OF MALAYSIAN INTERNATIONAL TRIBOLOGY CONFERENCE 2015, 2015, : 131 - 132
  • [10] Design and analysis of energy-harvesting shock absorber with electromagnetic and fluid damping
    Singh, Shankar
    Satpute, Nitin Vijay
    JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY, 2015, 29 (04) : 1591 - 1605