Fatigue and reliability analysis of unidirectional GFRP composites under rotating bending loads

被引:0
|
作者
Khashaba, UA [1 ]
机构
[1] Zagazig Univ, Fac Engn, Mech Design & Prod Engn Dept, Zagazig, Egypt
关键词
unidirectional composite rods; rotating bending fatigue; Weibull distribution; reliability analysis; mean life; survival life; lower bound life; safe design life;
D O I
10.1177/0021998303037004680
中图分类号
TB33 [复合材料];
学科分类号
摘要
Rotating bending fatigue tests have been conducted on unidirectional glass fiber reinforced polyester (GFRP) composites. Standard test specimens were manufactured in form of circular rods with various fiber volume fraction (V-f) ratios. Failure modes of the composite rods have been examined using scanning electron microscope. The two-parameter Weibull distribution function was used to investigate the statistical analysis of the experimental fatigue life results. Safe design life based on time to first failure (TTFF) concept was calculated at high confidence level gamma=0.99 and at two values of reliability, R=0.368 and 0.99. S-N diagrams of mean life, 50% survival life, lower bound life and safe design fatigue life have been constructed for GFRP rods with various values of Vf ratios. These diagrams are of considerable value to the designer specially when the structure contains a critical component where any failure is catastrophic. No rigorous fatigue limit was observed within 10(7) cycles in these S-N diagrams. The fiber volume fractions have insignificant effect on the slope of the power function that fits the mean fatigue life. At the same number of cycles the stress amplitude required to fracture the specimens with V-f=44.7% was increased by an order equal to 1.58 and 1.25 than specimens with V-f=15.8 and 31.8% respectively. The widest scatter was observed at the life range of 10(5) and 10(6) cycles for GFRP rode with different Vf ratios. This tendency in the dispersion of fatigue life at varying stress levels is extremely important and deserves much attention for the design and application of GFRP composites.
引用
收藏
页码:317 / 331
页数:15
相关论文
共 50 条
  • [21] FATIGUE RELIABILITY UNDER NONSTATIONARY LOADS - MODEL FORMULATION
    NIELSEN, RJ
    TRACY, D
    LONG, XQ
    JOURNAL OF STRUCTURAL ENGINEERING, 1993, 119 (02) : 662 - 669
  • [22] FATIGUE RELIABILITY UNDER MULTIPLE-AMPLITUDE LOADS
    TALREJA, R
    ENGINEERING FRACTURE MECHANICS, 1979, 11 (04) : 839 - 849
  • [23] FATIGUE RELIABILITY UNDER NONSTATIONARY LOADS - MODEL APPLICATION
    NIELSEN, RJ
    LONG, XQ
    JOURNAL OF STRUCTURAL ENGINEERING-ASCE, 1993, 119 (08): : 2441 - 2460
  • [24] Numerical Analysis on the Influence of Interface on the Mechanical Behavior of Unidirectional Fiber Composites under Different Loads
    Qu Peng
    Jia Yuxi
    Zhu Guowei
    Guo Yunli
    Sun Xiaochen
    RECENT HIGHLIGHTS IN ADVANCED MATERIALS, 2014, 575-576 : 188 - +
  • [25] ANALYSIS OF CRACK CLOSURE IN UNIDIRECTIONAL COMPOSITE PLATES SUBJECT TO BENDING LOADS
    KWON, YW
    ENGINEERING FRACTURE MECHANICS, 1992, 42 (05) : 825 - 831
  • [26] YIELDING IN UNIDIRECTIONAL COMPOSITES UNDER EXTERNAL LOADS AND TEMPERATURE-CHANGES
    DVORAK, GJ
    RAO, MSM
    TARN, JQ
    JOURNAL OF COMPOSITE MATERIALS, 1973, 7 (APR) : 194 - 216
  • [27] Optimization of the microstructure of unidirectional hybrid composites under uniaxial tensile loads
    Conde, F. M.
    Coelho, P. G.
    Tavares, R. P.
    Rodrigues, H. C.
    Guedes, J. M.
    Camanho, P. P.
    COMPOSITE STRUCTURES, 2020, 235
  • [28] Fatigue behavior of agricultural rims under rotating bending load
    Woellner, Uli
    Szlosarek, Robert
    Kroeger, Matthias
    FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2022, 45 (08) : 2143 - 2158
  • [29] Fatigue damage analysis of unidirectional metal matrix composites
    Kruch, Serge
    Carrere, Nicolas
    Chaboche, Jean-Louis
    INTERNATIONAL JOURNAL OF FATIGUE, 2006, 28 (10) : 1420 - 1425
  • [30] Analysis of stresses in aluminum particles embedded inside unidirectional and woven graphite/polyimide composites subjected to large bending loads
    Benedikt, B
    Kumosa, M
    Armentrout, D
    Kumosa, L
    Sutter, JK
    Predecki, PK
    MECHANICS OF ADVANCED MATERIALS AND STRUCTURES, 2004, 11 (01) : 31 - 49