Determination of rupture time and strain rate in creep by means of the uniaxial tensile test

被引:8
|
作者
Oh, HK
机构
[1] Department of Mechanical Engineering, Ajou University
关键词
rupture time; strain rate; creep; uniaxial tensile test;
D O I
10.1016/0924-0136(95)02172-8
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The log-log presentation of stress versus the Larson-Miller parameter is obtained from the uniaxial tensile test instead of from the long-time creep lest. The material used for sample calculations is SUS304 stainless steel. The temperature of the uniaxial tensile test can be determined by the Larson-Miller parameter of the design stress and the 0.1 h rupture time of the uniaxial tensile test. The rupture time at the design temperature and stress can be determined from the Larson-Miller parameter of the stress. The average creep rate is the total deformation of the tensile test divided by the rupture time al the design stress and temperature. The linear trend and the order of the data of the average creep rate by this method is almost the same as that of experimental results.
引用
收藏
页码:294 / 296
页数:3
相关论文
共 50 条
  • [41] Rate effect on the stress-strain behavior of concrete under uniaxial tensile stress
    Gao, Xiangling
    Zhou, Laijun
    Ren, Xiaodan
    Li, Jie
    STRUCTURAL CONCRETE, 2020, 22 (S1) : E815 - E830
  • [42] Effect of fiber orientation and strain rate on the nonlinear uniaxial tensile material properties of tendon
    Lynch, HA
    Johannessen, W
    Wu, JP
    Jawa, A
    Elliott, DM
    JOURNAL OF BIOMECHANICAL ENGINEERING-TRANSACTIONS OF THE ASME, 2003, 125 (05): : 726 - 731
  • [43] Strain rate sensitivity of DC06 for high strains under biaxial stress in hydraulic bulge test and under uniaxial stress in tensile test
    Jocham, David
    Norz, Roman
    Volk, Wolfram
    INTERNATIONAL JOURNAL OF MATERIAL FORMING, 2017, 10 (03) : 453 - 461
  • [44] Strain rate sensitivity of DC06 for high strains under biaxial stress in hydraulic bulge test and under uniaxial stress in tensile test
    David Jocham
    Roman Norz
    Wolfram Volk
    International Journal of Material Forming, 2017, 10 : 453 - 461
  • [45] Thermodynamic analysis of the empirical power relationships for creep rate and rupture time
    Natl Acad of Science of Ukraine, Kiev, Ukraine
    Metall Mat Trans A Phys Metall Mat Sci, 9 (1831-1842):
  • [46] A thermodynamic analysis of the empirical power relationships for creep rate and rupture time
    A. J. Krasowsky
    L. Toth
    Metallurgical and Materials Transactions A, 1997, 28 : 1831 - 1842
  • [47] A thermodynamic analysis of the empirical power relationships for creep rate and rupture time
    Krasowsky, AJ
    Toth, L
    METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 1997, 28 (09): : 1831 - 1842
  • [48] AN INCREMENTAL CREEP TEST METHOD FOR LONG-TERM CREEP-RUPTURE TIME PREDICTION
    FENG, L
    REVUE DE METALLURGIE-CAHIERS D INFORMATIONS TECHNIQUES, 1994, 91 (7-8): : 1143 - 1152
  • [49] RELATIONSHIP BETWEEN THE STATIONARY CREEP RATE AND THE TIME TO RUPTURE IN THE CREEP OF LOW-ALLOY STEELS
    SOBOTKA, J
    KOVOVE MATERIALY-METALLIC MATERIALS, 1978, 16 (06): : 725 - 738
  • [50] EFFECTS OF TEST VARIABLES ON SCATTER IN HIGH-TEMPERATURE TENSILE CREEP-RUPTURE DATA
    HAYHURST, DR
    INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 1974, 16 (11) : 829 - &