FATIGUE AND FRETTING FATIGUE BEHAVIOR OF METALLIC BIOMATERIALS

被引:0
|
作者
Maruyama, Norio [1 ]
机构
[1] Natl Inst Mat Sci, Ctr Biomat, Tsukuba, Ibaraki 3050044, Japan
来源
THERMEC 2009, PTS 1-4 | 2010年 / 638-642卷
关键词
fatigue; fretting fatigue; metallic biomaterial; simulated body fluid; fatigue strength; tensile strength; Ti alloy; Co-Cr alloy; stainless steel; PSEUDO-BODY FLUID;
D O I
10.4028/www.scientific.net/MSF.638-642.618
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A fretting fatigue test method in a simulated body fluid is shown to evaluate fatigue properties of metallic materials which are used in the orthopaedics field Next, fatigue/fretting fatigue behavior in a simulated body fluid is given for 316L stainless steel, Ti-6% Al-4% V alloy, pure Ti for industrial use and Co-Cr-Mo alloy. Finally, we discuss the relationship between the tensile strength and the fatigue strength/fretting fatigue strength of metallic biomaterials at 10(7) cycles in air and in a simulated body fluid For all of the biomaterials tested, the fatigue strength at 10(7) cycles is similar in air and in a simulated body fluid The fatigue strength is closely correlated to the tensile strength. The fatigue strength increases with increasing tensile strength However, a correlation is not observed between the fretting fatigue strength at 10(7) cycles and the fatigue strength or the tensile strength
引用
收藏
页码:618 / 623
页数:6
相关论文
共 50 条
  • [31] Crack behavior in the early stage of fretting fatigue fracture
    Kondoh, K
    Mutoh, Y
    FRETTING FATIGUE: CURRENT TECHNOLOGY AND PRACTICES, 2000, 1367 : 282 - 292
  • [32] High temperature fretting fatigue behavior of IN100
    Mall, S.
    Kim, H. -K.
    Porter, W. J.
    Ownby, J. F.
    Traylor, A. G.
    INTERNATIONAL JOURNAL OF FATIGUE, 2010, 32 (08) : 1289 - 1298
  • [33] Effects of microstructure on fretting fatigue behavior of IN100
    Mall, S.
    Kim, H. -K.
    Saladin, E. C.
    Porter, W. J.
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2010, 527 (06): : 1453 - 1460
  • [34] Fretting Fatigue Behavior of High Strength Aluminum Alloys
    Choi, Sung-Jong
    Lee, Hak-Sun
    Kim, Sang-Tae
    Lee, Cheol-Jae
    TRANSACTIONS OF THE KOREAN SOCIETY OF MECHANICAL ENGINEERS A, 2007, 31 (02) : 197 - 204
  • [35] MECHANICS OF FRETTING FATIGUE
    HILLS, DA
    WEAR, 1994, 175 (1-2) : 107 - 113
  • [36] EFFECT OF FRETTING ON FATIGUE
    REEVES, RK
    HOEPPNER, DW
    WEAR, 1976, 40 (03) : 395 - 397
  • [37] WAVEFORMS IN FRETTING FATIGUE
    ROOKE, DP
    EDWARDS, PR
    FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 1988, 11 (06) : 447 - 465
  • [38] FRETTING AND CORROSION FATIGUE
    不详
    CORROSION SCIENCE, 1970, 10 (05) : 384 - &
  • [39] Fretting fatigue and wear
    Miyoshi, K
    Lerch, BA
    Draper, SL
    TRIBOLOGY INTERNATIONAL, 2003, 36 (02) : 69 - 69
  • [40] ON THE MECHANICS OF FRETTING FATIGUE
    HILLS, DA
    NOWELL, D
    OCONNOR, JJ
    WEAR, 1988, 125 (1-2) : 129 - 146