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滑动轴承材料疲劳强度试验 被引量:3

Experiment of Fatigue Strength for Sliding Bearing Material
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出处 《内燃机配件》 2003年第4期44-45,共2页 Internal Combustion Engine Parts
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同被引文献31

  • 1傅希才,李运茂.国外铝合金轴瓦带生产[J].钢铁研究,1993,21(6):55-59. 被引量:2
  • 2秦萍,闫兵谭,达明.滑动轴承故障诊断实用诊断原则的研究[J].机械传动,2005,29(2):52-54. 被引量:7
  • 3张宝义.内燃机轴瓦的损坏形式及其机理[J].内燃机配件,2005(3):11-14. 被引量:1
  • 4笼原幸彦 藤田正仁 山本康一.用于轴承的铝合金板的制备方法[P].中国发明专利.CN1358584A.2002-07-17.
  • 5藤田正仁 笼原幸彦 山本康一.铝轴承合金[P].中国发明专利.CN1334353A.2002-02-06.
  • 6[2]Sehgal R,Gandhi O P,Angra S.Failure mode analysis of sliding bearings.Journal of the Institution of Engineers (India):Mechanical Engineering Division,2000;81:
  • 7[3]Barykin N P,Sadykov F A,Aslanian I R.Wear and failure of babbitt bushes in steam turbine sliding bearings.Journal of Materials Engineering and Performance,2000; 9:
  • 8[9]Pippan R,Flechsig K,Riemelmoser F O.Fatigue crack propagation behavior in the vicinity of an interface between materials with different yield stresses.Materials Science and Engineering A:Structural Materials:Properties,Microstructure and Processing,2000; 283 (1-2):225-233
  • 9[10]Sraml M,Potrc F J.Critical plane modeling of fatigue initiation under rolling and sliding contact.Journal of Strain Analysis for Engineering Design,2004; 39:
  • 10[11]Yang Yanyi,Torrance A A,Oxley P L B.Modeling mechanical wear processes in metallic sliding friction.Journal of Physics D:Applied Physics,1996; 29:

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