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Original Articles

Numerical Study of the Effects on Clearance Joint Wear in Flexible Multibody Mechanical Systems

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Pages 385-396 | Received 26 Mar 2014, Accepted 09 Oct 2014, Published online: 04 Feb 2015

REFERENCES

  • Flores, P., Koshy, C.S., Lankarani, H.M., and Ambrósio, J. (2011), “Claro JCP: Numerical and Experimental Investigation on Multibody Systems with Revolute Clearance Joints,” Nonlinear Dynamics, 65, pp 383–398.
  • Flores, P. and Ambrósio, J. (2004), “Revolute Joints with Clearance in Multibody Systems,” Computers & Structures, 82, pp 1359–1369.
  • Flores, P., Ambrósio, J., Claro, J.C. P., and Lankarani, H.M. (2006), “Dynamics of Multibody Systems with Spherical Clearance Joints,” Journal of Computational and Nonlinear Dynamics, 3, pp 240–247.
  • Erkaya, S. and Uzmay, I. (2009), “Determining Link Parameters Using Genetic Algorithm in Mechanisms with Joint Clearance,” Mechanism and Machine Theory, 44, pp 222–234.
  • Erkaya, S. and Uzmay, I. (2010), “Experimental Investigation of Joint Clearance Effects on the Dynamics of a Slider Crank mechanism,” Multibody Systems Dynamics, 20, pp 69–83.
  • Olyaei, A.A. and Ghazavi, M.R. (2012), “Stabilizing Slider Crank Mechanism with Clearance Joints,” Mechanism and Machine Theory, 44, pp 1211–1222.
  • Muvengei, O., Kihiu, J., and Ikua, B. (2012), “Numerical Study of Parametric Effects on the Dynamic Response of Planar Multi-Body Systems with Differently Located Frictionless Revolute Clearance Joints,” Mechanism and Machine Theory, 53, pp 30–49.
  • Bai, Z.F. and Zhao, Y. (2012),”Dynamics Modeling and Quantification Analysis of Multibody Systems Including Revolute Clearance Joints,” Precision Engineering, 36, pp 554–567.
  • Chunmei, J., Yang, Q., Ling, F., and Ling, Z. (2002), “The Non-Linear Dynamic Behavior of an Elastic Linkage Mechanism with Clearances,” Journal of Sound and Vibration, 2, pp 213–226.
  • Schwab, A.L., Meijaard, J.P., and Meijers, P. (2002), “A Comparison of Revolute Clearance Models in the Dynamic Analysis of Rigid and Elastic Mechanical Systems,”Mechanism and Machine Theory, 37, pp 895–913.
  • Imed, K. and Lotfi, R. (2008),”Dynamic Analysis of a Flexible Slider–Crank Mechanism with Clearance,” European Journal of Mechanics A - Solids, 27, pp 882–898.
  • Flores, P., Lankarani, H.M., Ambrósio, J., and Claro, J.C. P. (2004), “Modelling Lubricated Revolute Joints in Multibody Mechanical Systems,” Proceedings of the Institution of Mechanical Engineers, Part K: Journal of Multi-body Dynamics, 58, pp 183–190.
  • Flores, P. and Lankarani, H.M. (2010), “Spatial Rigid-Multi-Body Systems with Lubricated Spherical Clearance Joints. Modeling and Simulation,” Nonlinear Dynamics, 60, pp 99–114.
  • Tian, Q., Zhang, Y., and Chen, L. (2010), “Simulation of Planar Flexible Multibody Systems with Clearance and Lubricated Revolute Joints,” Nonlinear Dynamics, 60, pp 489–511.
  • Tian, Q., Zhang, Y., Chen, L., and Flores, P. (2009), “Dynamics of Spatial Flexible Multibody Systems with Clearance and Lubricated Spherical Joints,” Computers and Structures, 87, pp 913–929.
  • Tian, Q., Liu, C., Machado, M., and Flores, P. (2011), “A New Model for Dry and Lubricated Cylindrical Joints with Clearance in Spatial Flexible Multibody Systems,” Nonlinear Dynamics, 64, pp 25–47.
  • Liu, C., Tian, Q., and Hu, H. (2012), “Dynamics and Control of a Spatial Rigid-Flexible Multibody System with Multiple Cylindrical Clearance Joints,” Mechanism and Machine Theory, 52, pp 106–129.
  • Tian, Q., Sun, Y., Liu, C., Hu, H., and Flores, P. (2013), “Elastohydrodynamic Lubricated Cylindrical Joints for Rigid-Flexible Multibody Dynamics,”Computers and Structures, 114–115, pp 106–120.
  • Flores, P. (2007), “Modeling and Simulation of Wear in Revolute Clearance Joints Mutibody System,” Mechanism and Machine Theory, 44, pp 1211–1222.
  • Mukras, S., Kim, N.H., Mauntler, N.A., Schmitz, T.L., and Sawyer, W.G. (2010), “Analysis of Planar Multibody Systems with Revolute Joint Wear,” Wear, 268, pp 643–652.
  • Mukras, S., Kim, N.H., Sawyer, W.G., Jackson, D.B., and Bergquist, L.W. (2009), “Numerical Integration Schemes and Parallel Computation for Wear Prediction Using Finite Element Method,” Wear, 266, pp 822–832.
  • Su, Y., Chen, W., Tong, Y., and Xie, Y. (2010), “Wear Prediction of Clearance Joint by Integrating Multi-Body Kinematics with Finite-Element Method,” Proceedings of the Institution of Mechanical Engineers - Part J: Journal of Engineering Tribology, 58, pp 815–823.
  • García-Vallejo, D., Mikkola, A.M., and Escalona, J.L. (2007), “A New Locking-Free Shear Deformable Finite Element Based on Absolute Nodal Coordinates,” Nonlinear Dynamics, 50, pp 249–264.
  • Muvengei, O., Kihiu, J., and Ikua, B. (2012), “Dynamic Analysis of Planar Multi-Body Systems with LuGre Friction at Differently Located Revolute Clearance Joints,” Multibody System Dynamics, 28, pp 369–393.
  • Omar, M. and Shabana, A.A. (2001), “A Two-Dimensional Shear Deformable Beam for Large Rotation and Deformation Problems,” Journal of Sound and Vibration, 243, pp 565–576.
  • Machado, M., Moreira, P., Flores, P., and Lankarani, H.M. (2012), “Compliant Contact Force Models in Multibody Dynamics: Evolution of the Hertz Contact Theory,” Mechanism and Machine Theory, 53, pp 99–121.
  • Seifried, R., Schiehlen, W., and Eberhard, P. (2010), “The Role of the Coefficient of Restitution on Impact Problems in Multi-Body Dynamics,” Proceedings of the Institution of Mechanical Engineers, Part K: Journal of Multi-body Dynamics, 224, pp 279–306.
  • Flores, P., Machado, M., Silva, M.T., and Martins, J.M. (2011), “On the Continuous Contact Force Models for Soft Materials in Multibody Dynamics,” Multibody System Dynamics, 25, pp 357–375.
  • Flores, P., Ambrósio, J., and Claro, J.P. (2004), “Dynamic Analysis for Planar Multibody Mechanical Systems with Lubricated Joints,” Multibody System Dynamics, 12, pp 47–74.
  • Huebner, K.H. and Thornton, E.A. (1995), The Finite Element Method for Engineers, John Wiley & Sons.
  • Meijaard, J.P. (1997), “Efficient Numerical Integration of the Equations of Motion of Non-Smooth Mechanical Systems,” Zeitschrift für Angewandte Mathematik und Mechanik, 77, pp 419–427.
  • Chung, J. and Hulbert, G. (1993), “A Time Integration Algorithm for Structural Dynamics With Improved Numerical Dissipation, the Generalized-α Method,” Journal of Applied Mechanics, 60, pp 371–375.
  • Meng, H.C. and Ludema, K.C. (1995), “Wear Models and Predictive Equations: Their Form and Content,” Wear, 181–183, pp 443–457.
  • Archard, J.F. (1953), “Contact and Rubbing of Flat Surfaces,” Journal of Applied Physics, 24, pp 981–988.
  • Choi, K.K. and Chang, K.H. (1994), “A Study of Design Velocity Field Computation for Shape Optimal Design,”Finite Elements in Analysis & Design, 15, pp 317–341.
  • Liu, C., Tian, Q., and Hu, H.Y. (2011), “Dynamics of a Large Scale Rigid-Flexible Multibody System Composed of Composite Laminated Plates,” Multibody System Dynamics, 26, pp 283–305.
  • Enlai, Z. and Xinlong, Z. (2014), “Modeling and Simulation of Flexible Slider–Crank Mechanism with Clearance for a Closed High Speed Press System,” Mechanism and Machine Theory, 74, pp 10–30.
  • Hussein, B., Negrut, D., and Shabana, A.A. (2008), “Implicit and Explicit Integration in the Solution of the Absolute Nodal Coordinate Differential/Algebraic Equations,”Nonlinear Dynamics, 54, pp 283–296.
  • Tian, Q., Zhang, Y., Chen, L., and Yang, J. (2009), “An Efficient Hybrid Method for Multibody Dynamics Simulation Based on Absolute Nodal Coordinate Formulation,” Journal of Computational and Nonlinear Dynamics, 4, 021009.
  • Shabana, A.A. and Hussein, B. (2009), “A Two-Loop Sparse Matrix Numerical Integration Procedure for the Solution of Differential/Algebraic Equations: Application to Multibody Systems,” Journal of Sound and Vibration, 327, pp 557–563.
  • Benjamin, D.L., Farshid, S., Sachin, S., and Marc, M. (2012), “A Numerical and Experimental Investigation of Fretting Wear and a New Procedure for Fretting Wear Maps,” Tribology Transactions, 55, pp 313–324.
  • Yang, L.J. (2004), “Prediction of Steady-State Wear Coefficients in Adhesive Wear,” Tribology Transactions, 47, pp 335–340.
  • Martin, C.M. and Richard, E.M. (2013), “Experimental Investigations on the Coefficient of Restitution of Single Particles,” Tribology Transactions, 56, pp 572–580.
  • Kumar, P.S., Manisekar, K., and Narayanasamy, R. (2014), “Experimental and Prediction of Abrasive Wear Behavior of Sintered Cu-SiC Composites Containing Graphite by Using Artificial Neural Networks,” Tribology Transactions, 57, pp 455–471.
  • Jeon, H.G. and Lee, Y.Z. (2013), “The Evaluation of Wear Life Based on Accelerated Testthrough Analysis of Correlation between Wear Rate and Lubricant Film Parameter,” Tribology Transactions, 56, pp 290–300.
  • Zhao, B., Dai, X.D., Zhang, Z.N., Wu, S.H., and Xie, Y.B. (2014), “Numerical Study of Parametric Effects on Joint Wear in the Flexible Multibody Systems with Different Flexibilities and Clearance Sizes,” Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology, 228, 819–835.
  • Zhao, B., Zhang, Z.N., and Dai, X.D. (2014), “Modeling and Prediction of Wear at Revolute Clearance Joints in Flexible Multibody Systems,” Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 58(), pp 317–329.
  • Rezaei, A., Van Paepegem, W., De Baets, P., Ost, W., and Degrieck, J. (2012), “Adaptive Finite Element Simulation of Wear Evolution in Radial Sliding Bearings,” Wear, 296(1), pp 660–671.
  • Lankarani, H. M., and Nikravesh, P. E. (1990), “A Contact Force Model with Hysteresis Damping for Impact Analysis of Multibody Systems,” Journal of Mechanical Design, 112, pp 369–376.

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