Prediction of flexural fatigue strength of steel fibrous concrete using Weibull distribution

被引:0
|
作者
Singh, S.P.
Kaushik, S.K.
机构
[1] Civil Engineering Department, Regional Engineering College, Jalandhar 144 011, India
[2] Civ. Eng. Dept. Univ. of Roorkee, Roorkee 247 667, India
关键词
D O I
暂无
中图分类号
学科分类号
摘要
This paper presents a study on the fatigue strength of steel fibre reinforced concrete (SFRC) for various stress levels and stress ratios using two-parameter Weibull distribution. An experimental programme was planned to obtain the fatigue lives of SFRC at various stress levels and stress ratios. Eighty three SFRC beam specimens of size 100 mm x 100 mm x 500 mm were tested under four-point flexural fatigue loading. Sixty eight complementary static flexural tests were also conducted. The specimens incorporated 0.5% volume fraction of corrugated xerox type steel fibres of size 0.6 mm x 2.0 mm x 30 mm. Concept of equivalent fatigue-life, reported for plain concrete in literature, is extended to SFRC to incorporate the effects of stress level, stress ratio and survival probability (reliability) using the fatigue equation S = fmax/fr = A(N)-B(1-R). The results indicate that the distribution of equivalent fatigue-life is in excellent agreement with the two-parameter Weibull distribution. The coefficients A and B of this equation have been obtained corresponding to different survival probabilities so that the equation can be used to predict the flexural fatigue strength of steel fibrous concrete.
引用
收藏
页码:120 / 126
相关论文
共 50 条
  • [41] Strength and toughness prediction of slurry infiltrated fibrous concrete using multilinear regression
    Shelorkar, Ajay P.
    Jadhao, Pradip D.
    [J]. ADVANCES IN CONCRETE CONSTRUCTION, 2022, 13 (02) : 123 - 132
  • [42] The effect of fibre distribution characteristics on the flexural strength of steel fibre-reinforced ultra high strength concrete
    Kang, Su Tae
    Lee, Bang Yeon
    Kim, Jin-Keun
    Kim, Yun Yong
    [J]. CONSTRUCTION AND BUILDING MATERIALS, 2011, 25 (05) : 2450 - 2457
  • [43] Statistical Scrutinize of Flexural Fatigue Strength of Self-compacting Steel Fibre Reinforced Concrete Beams
    Murali, G.
    [J]. JOURNAL OF APPLIED SCIENCE AND ENGINEERING, 2018, 21 (02): : 155 - 162
  • [44] EFFECTS OF AGE ON FLEXURAL, FATIGUE AND COMPRESSIVE STRENGTH OF CONCRETE.
    Galloway, J.W.
    Harding, H.M.
    Raithby, K.D.
    [J]. TRRL Laboratory Report (Transport and Road Research Laboratory, Great Britain), 1979, (865):
  • [45] EFFECTS OF MOISTURE CHANGES ON FLEXURAL AND FATIGUE STRENGTH OF CONCRETE.
    Galloway, J.W.
    Harding, H.M.
    Raithby, K.D.
    [J]. TRRL Laboratory Report (Transport and Road Research Laboratory, Great Britain), 1979, (864):
  • [46] Prediction of spun yam strength at different gauge lengths using Weibull distribution
    Rengasamy, RS
    Ishtiaque, SM
    Ghosh, A
    [J]. INDIAN JOURNAL OF FIBRE & TEXTILE RESEARCH, 2005, 30 (03) : 283 - 289
  • [47] Prediction of flexural Strength of SFRC form Concrete Strength without fibres
    Shende, A. M.
    Pande, A. M.
    Manchalwar, Sakshi
    [J]. 1ST INTERNATIONAL CONFERENCE ON ADVANCED ENGINEERING FUNCTIONAL MATERIALS (ICAEFM), 2018, 410
  • [48] Bond strength prediction of steel bars in low strength concrete by using ANN
    Ahmed, Sohaib
    Pilakoutas, Kypros
    Rafi, Muhammad M.
    Zaman, Qaiser U.
    [J]. COMPUTERS AND CONCRETE, 2018, 22 (02): : 249 - 259
  • [49] Reliability of Fatigue Strength Curves for Riveted Connections Using Normal and Weibull Distribution Functions
    Pedrosa, Bruno
    Correia, Jose A. F. O.
    Rebelo, Carlos A. S.
    Veljkovic, Milan
    [J]. ASCE-ASME JOURNAL OF RISK AND UNCERTAINTY IN ENGINEERING SYSTEMS PART A-CIVIL ENGINEERING, 2020, 6 (03):
  • [50] Flexural fatigue analysis of steel fiber-reinforced concrete
    Singh, SP
    Kaushik, SK
    [J]. ACI MATERIALS JOURNAL, 2001, 98 (04) : 306 - 312