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Performance of Steel Structures under Fatigue Cyclic Loading

Performance of Steel Structures under Fatigue Cyclic Loading
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出处 《Journal of Civil Engineering and Architecture》 2011年第3期265-272,共8页 土木工程与建筑(英文版)
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参考文献10

  • 1W. Andrew, Fatigue and Tribological Plastics and Elastomers, Morris: NY, 1995.
  • 2G. E. Dieter, Mechanical Metallurgy, Science/Engineering, 1988.
  • 3Properties of McGraw-Hill F. Braithwaite, On the fatigue and consequent fracture of metals, Institution of Civil Engineers, Minutes of Proceedings, 1854, pp. 463-474.
  • 4R. E. Little and E. H. Jebe, Statistical Design of Fatigue Experiments, New York: Halsted Press, 1975.
  • 5Material Technologies, Inc., Completes EFS Inspection of Bridge in New Jersey, Press release regarding metal fatigue damage to the Manahawkin Bay Bridge in New Jersey.
  • 6P. C. Paris, M. P. Gomez and W. E. Anderson, A rational analytic theory of fatigue, The Trend in Engineering 13 (1961) 9-14.
  • 7S. R. Satish Kumar and A. R. Santha Kumar, Design of Steel Structures, Indian Institute of Technology Madras, 2005.
  • 8I. Stephens Ralph, Metal Fatigue in Engineering (2nd ed.), John Wiley & Sons, Inc., 2001, p. 69.
  • 9W. J. M. Rankine, On the causes of the unexpected breakage of the journals of railway axles, and on the means of preventing such accidents by observing the law of continuity in their construction, Institution of Civil Engineers, Minutes of Proceedings, 1998, pp. 105-108.
  • 10W. Schutz, A history of fatigue, Engineering Fracture Mechanics, 54 (1996) 263-300.

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