Fatigue Life Prediction of Girth Gear-Pinion Assembly Used in Kilns by Finite Element Analysis

被引:2
|
作者
Annamalai, K. [1 ]
Sathyanarayanan, S. [1 ]
Naiju, C. D. [2 ]
Shejeer, Mohammed [2 ]
机构
[1] VIT Univ, SMBS, Madras, Tamil Nadu, India
[2] VIT Univ, SMBS, Vellore, Tamil Nadu, India
来源
ADVANCED MATERIALS DESIGN AND MECHANICS II | 2013年 / 372卷
关键词
Fatigue Life; Gear pinion; Finite element analysis; STEEL;
D O I
10.4028/www.scientific.net/AMM.372.292
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
This study is focused on predicting the fatigue life expectancy of Girth gear-pinion assembly used in cement industries. Gear design and modeling was carried out using a CAD package and analysis was done using finite element analysis software, ANSYS. AISI 4135-low alloy steel material properties are considered and linear elastic finite element analysis and fatigue life analysis were carried out. The variable amplitude load is applied to simulate the real time loading of the gear-pinion assembly. Rainflow cycle counting algorithm and Minar's linear damage rule is employed to predict the fatigue life. The critical stress and the corresponding deformation are discussed in the results. Finally the life expectancy of the girth gear and pinion assembly is estimated which would be useful for the periodical maintenance of the gear assembly.
引用
收藏
页码:292 / +
页数:2
相关论文
共 50 条
  • [31] Finite element analysis and structure optimization for improving the fatigue life of rubber mounts
    Zhao, Jiancai
    Li, Qian
    Shen, Xiaoyan
    JOURNAL OF MACROMOLECULAR SCIENCE PART A-PURE AND APPLIED CHEMISTRY, 2008, 45 (06): : 479 - 484
  • [32] Prediction of Rail Rolling Contact Fatigue Crack Initiation Life via Three-Dimensional Finite Element Analysis
    Martua, Landong
    Ng, Andrew Keong
    Sun, George
    2018 INTERNATIONAL CONFERENCE ON INTELLIGENT RAIL TRANSPORTATION (ICIRT), 2018,
  • [33] Probabilistic finite element analysis of fatigue life of additively manufactured clasp Kento
    Odaka, Kento
    Takano, Naoki
    Takizawa, Hideo
    Matsunaga, Satoru
    DENTAL MATERIALS JOURNAL, 2022, 41 (02) : 286 - 294
  • [34] Finite element analysis and structure optimization for improving the fatigue life of rubber mounts
    Zhao, Jiancai
    Li, Qian
    Shen, Xiaoyan
    JOURNAL OF MACROMOLECULAR SCIENCE PART A-PURE AND APPLIED CHEMISTRY, 2008, 45 (07): : 542 - 547
  • [35] Fatigue life improvement of scallops in ships/FPSOs using finite element analysis
    Norman, M
    Lotsberg, I
    PROCEEDINGS OF THE ELEVENTH (2001) INTERNATIONAL OFFSHORE AND POLAR ENGINEERING CONFERENCE, VOL IV, 2001, : 105 - 110
  • [36] Vehicle Frame Fatigue Life Prediction Based on Finite Element and Multi-body Dynamic
    Zhu, SiHong
    Xiao, ZhiJin
    Li, XiaoYan
    FUNCTIONAL MANUFACTURING AND MECHANICAL DYNAMICS II, 2012, 141 : 578 - 585
  • [37] Prediction of fatigue crack growth rates using crack closure finite element analysis
    Alizadeh, Hassan
    Simandjuntak, Sarinova
    Smith, David
    Pavier, Martyn
    INTERNATIONAL JOURNAL OF FATIGUE, 2007, 29 (9-11) : 1711 - 1715
  • [38] Fatigue failure prediction of a rear axle housing prototype by using finite element analysis
    Topac, M. M.
    Gunal, H.
    Kuralay, N. S.
    ENGINEERING FAILURE ANALYSIS, 2009, 16 (05) : 1474 - 1482
  • [39] Multiaxial notch fatigue life prediction based on pseudo stress correction and finite element analysis under variable amplitude loading
    Tao, Z-Q
    Shang, D-G
    Sun, Y-J
    Liu, X-D
    Chen, H.
    Li, Z-G
    FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2018, 41 (08) : 1674 - 1690
  • [40] Fatigue life prediction of friction stir spot welds based on cyclic strain range with hardness distribution and finite element analysis
    Samrand Rash Ahmadi
    Soran Hassanifard
    Masoud Mohammad Pour
    Acta Mechanica, 2012, 223 : 829 - 839