• Kinematic Motion Analysis and Structural Analysis of Bellcrank Structures Using FEM
  • DOI: 10.4236/jsea.2013.67B009   PP.49 - 55
  • Author(s)
  • Byeong-Sam Kim, Kyoungwoo Park
  • ABSTRACT
  • The results of kinematic motion analysis were used for the structural analysis based on data that the load applied to each part. The problem of the fatigue strength estimation of materials or components containing natural defects, inclusions or in homogeneities is of great importance for both a scientifically or industrial point of view. Fatigue behavior in components is often affected by the presence of residual stresses introduced by processes such as actuator system. Analysis can provide the estimation of the crack growth curves with sufficient accuracy, even in case of complicated bell crank structures which are crucial for preserving aileron integrity and which participate in transfer of load. Probability of crack detection or any other damage detection is a result of many factors. An endurance life prediction of bell crank is used finite element analyses. Endurance test data for slim test specimens were compared with the predicted fatigue life for verification.

  • KEYWORDS
  • Kinematic Motion Analysis; Fatigue Life Analysis; FEM; Bell Crank System; Structural Analysis
  • References
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    [7] C. W. Jun, K.Y. Park and Q. S. Kang, “On the Static Test of Aileron Control System for a Basic Trainer,” KSAS journal, Vol. 28, No. 3, 2000, pp. 150-155.

    [8] S. S. Kim, Y. J. Kang and K. I. Lee, “Experimental Verification of Flexible Multibody Dynamic Simulations for A Rotating Beam,” KSME International Journal, Vol. 26, No. 2, 2002, pp. 267-274.

    [9] I. H. Moon and Y. K. Huang, “Evaluation of a Wafer Transportation Speed for Propulsion Nozzle Array on Air Levitation System,” Journal of Mechanical Science and Technology (KSME Int. J.), Vol. 20, No. 9, 2006, pp. 1492-1501.




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    April 3, 2014>>  May 14, 2014
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    May 3, 2014>>  May 23, 2014
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