Strain-controlled tests for determining the changes in the fatigue parameters of materials

被引:0
|
作者
W. Będkowski
T. Łagoda
J. Słowik
机构
[1] Opole University of Technology,
来源
Materials Science | 2007年 / 43卷
关键词
Fatigue; Fatigue Test; Strain Amplitude; Fatigue Damage; Cyclic Strain;
D O I
暂无
中图分类号
学科分类号
摘要
We present the results of fatigue testing of cyclically hardened 2017(A)-T4 aluminum alloy (AlCu4 Mg Si) for five levels of cyclic strains. The cyclic instability of this material hardened under variable cyclic loads leads to the variations of the coefficients of fatigue characteristics of the Manson-Coffin-Basquin curve. The analysis of these changes in the process of evaluation of the fatigue strength of materials enables us to improve the values of this quantity for cyclically unstable materials. We propose a model for the evaluation of the fatigue strength of materials under random loading and, in particular, for the variable characteristics and coefficients of fatigue strength and plasticity.
引用
收藏
页码:492 / 498
页数:6
相关论文
共 50 条
  • [41] Dependence of Suspension Complex Viscosity on Frequency: Strain-controlled vs. Stress-controlled Tests
    Martone, Raffaella
    Paduano, Liana P.
    Carotenuto, Claudia
    Minale, Mario
    9TH INTERNATIONAL CONFERENCE ON TIMES OF POLYMERS AND COMPOSITES: FROM AEROSPACE TO NANOTECHNOLOGY, 2018, 1981
  • [42] The strain-controlled fatigue behavior and modeling of Haynes® HASTELLOY® C-2000® superalloy
    McDaniels, R. L.
    Chen, L.
    Steward, R.
    Liaw, P. K.
    Buchanan, R. A.
    White, Steve
    Liaw, Kevin
    Klarstrom, D. L.
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2011, 528 (12): : 3952 - 3960
  • [43] Optimisation methods for the determination of cyclic material parameters from strain controlled uniaxial fatigue tests
    Fuhrmann, K.
    Neumeister, P.
    Eulitz, K. -G.
    INTERNATIONAL JOURNAL OF FATIGUE, 2016, 83 : 93 - 99
  • [44] Experimental Analysis of NiTi Alloy during Strain-Controlled Low-Cycle Fatigue
    Lima, Pedro Cunha
    Rodrigues, Patricia Freitas
    Ramos, Ana Sofia
    da Costa, Jose D. M.
    Braz Fernandes, Francisco Manuel
    Vieira, Maria Teresa
    MATERIALS, 2021, 14 (16)
  • [45] STRAIN-CONTROLLED FATIGUE PROPERTIES OF HIGH-STRENGTH LOW-ALLOY STEELS
    KIM, YH
    FINE, ME
    JOURNAL OF METALS, 1980, 32 (12): : 29 - 29
  • [46] Evaluation of Transfer Function and Dynamic Properties from Strain-Controlled Resonant Column Tests
    Khan, Zahid
    Cascante, Giovanni
    Moayerian, Soheil
    Grabinsky, Murray
    GEOTECHNICAL TESTING JOURNAL, 2013, 36 (03): : 352 - 359
  • [47] Strain-controlled electrocatalysis on multimetallic nanomaterials
    Mingchuan Luo
    Shaojun Guo
    Nature Reviews Materials, 2
  • [48] Non-contact strain-controlled fatigue test with digital image measurement system
    Kanchanomai, C
    Yamamoto, S
    Miyashita, Y
    Mutoh, Y
    SECOND INTERNATIONAL CONFERENCE ON EXPERIMENTAL MECHANICS, 2001, 4317 : 37 - 45
  • [49] Fatigue behaviour in a plastic strain-controlled mode of an austenitic stainless steel treated by explosive
    Gerland, M
    Dufour, JP
    FouillandPaille, L
    Violan, P
    Presles, HN
    Mendez, J
    JOURNAL OF MATERIALS SCIENCE, 1996, 31 (08) : 2071 - 2080
  • [50] The behavior of HASTELLOY® C-2000® alloy under strain-controlled fatigue loading
    McDaniels, RL
    Chen, L
    Steward, R
    Liaw, PK
    Buchanan, RA
    Klarstrom, DL
    MATERIALS LIFETIME SCIENCE & ENGINEERING, 2003, : 241 - 254