The influence of contact conditions and micromotions on the fretting behavior of modular titanium alloy taper connections

被引:64
作者
Baxmann, M. [1 ,2 ]
Jauch, S. Y. [2 ]
Schilling, C. [1 ,3 ,4 ]
Bloemer, W. [1 ]
Grupp, T. M. [1 ,5 ]
Morlock, M. M. [2 ]
机构
[1] Aesculap AG, Res & Dev, D-78532 Tuttlingen, Germany
[2] TUHH Hamburg Univ Technol, Inst Biomech, Hamburg, Germany
[3] Charite, Charite, Julius Wolff Inst, D-13353 Berlin, Germany
[4] Charite, Charite, Berlin Brandenburg Ctr Regenerat Therapies, D-13353 Berlin, Germany
[5] Univ Munich, Clin Orthopaed Surg, Munich, Germany
关键词
Modular hip; Stem-neck interface; Fretting; Titanium alloy; TOTAL HIP-ARTHROPLASTY; FEMORAL-NECK; CORROSION; WEAR; PROSTHESIS; TI-6AL-4V; FREQUENCY; FRACTURE; FAILURE; CREVICE;
D O I
10.1016/j.medengphy.2012.07.013
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Modularity of femoral stems and neck components has become a more frequently used tool for an optimized restoration of the hip joint center and improvement of patient biomechanics. The additional taper interface increases the risk of mechanical failure due to fretting and crevice corrosion. Several failures of titanium alloy neck adapters have been documented in case-reports. An experimental fretting device was developed in this study to systematically investigate the effect of micromotion and contact pressure on fretting damage in contact situations similar to taper interfaces of modular hip prostheses under cyclic loading representative of in vivo load conditions. As a first application, the fretting behavior of Ti-6Al-4V titanium alloy components was investigated. Micromotions were varied between 10 mu m and 50 mu m, maximum contact pressures between 400 and 860 N/mm(2). All modes of fretting damage were observed: Fretting wear was found for high micromotions in combination with low contact pressures. Fretting fatigue occurred with reduced movement or increased contact pressures. With small micromotions or high normal pressures, low fretting damage was observed. The developed device can be used to evaluate taper design (and especially contact geometry) as well as different materials prior to clinical use. (C) 2012 IPEM. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:676 / 683
页数:8
相关论文
共 47 条
  • [1] Abdullah Kassim A., 2008, Proceedings of the 19th IASTED International Conference on Modelling and Simulation, P364
  • [2] Attia MH, 1992, ASTM
  • [3] Corrosion-Induced Fracture of a Double-Modular Hip Prosthesis A Case Report
    Atwood, Sara A.
    Patten, Eli W.
    Bozic, Kevin J.
    Pruitt, Lisa A.
    Ries, Michael D.
    [J]. JOURNAL OF BONE AND JOINT SURGERY-AMERICAN VOLUME, 2010, 92A (06) : 1522 - 1525
  • [4] Barril S., 2003, FRETTING CORROSION T
  • [5] Hip contact forces and gait patterns from routine activities
    Bergmann, G
    Deuretzbacher, G
    Heller, M
    Graichen, F
    Rohlmann, A
    Strauss, J
    Duda, GN
    [J]. JOURNAL OF BIOMECHANICS, 2001, 34 (07) : 859 - 871
  • [6] Realistic loads for testing hip implants
    Bergmann, G.
    Graichen, F.
    Rohlmann, A.
    Bender, A.
    Heinlein, B.
    Duda, G. N.
    Heller, M. O.
    Morlock, M. M.
    [J]. BIO-MEDICAL MATERIALS AND ENGINEERING, 2010, 20 (02) : 65 - 75
  • [7] BOBYN JD, 1994, CLIN ORTHOP RELAT R, P27
  • [8] FRETTING CORROSION IN SALINE AND SERUM
    BROWN, SA
    MERRITT, K
    [J]. JOURNAL OF BIOMEDICAL MATERIALS RESEARCH, 1981, 15 (04): : 479 - 488
  • [9] COOK SD, 1994, CLIN ORTHOP RELAT R, P80
  • [10] Cook Stephen D., 1993, Clinical Materials, V12, P153, DOI 10.1016/0267-6605(93)90067-H