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Research Article

Displacement analysis of slider in slider-crank mechanism with joint clearance

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Pages 949-958 | Received 22 Mar 2020, Accepted 27 Apr 2020, Published online: 13 May 2020

References

  • Ahmedalbashir, M., L. Romdhane, and J. Lee. 2017. “Dynamics of a Four-bar Mechanism with Clearance and Springs - Modeling and Experimental Analysis.” Journal of Mechanical Science and Technology 31 (3): 1023–1033. doi:10.1007/s12206-017-0201-6.
  • Anis, A. 2012. “Simulation of Slider-crank Mechanism Using ADAMS Software.” International Journal of Engineering & Technology 12 (4): 108 - 112.
  • Chen, Y., Y. Sun, and C. Chen. 2016. “Dynamic Analysis of a Planar Slider-crank Mechanism with Clearance for a High Speed and Heavy Load Press System.” Mechanism and Machine Theory 98: 81–100. doi:10.1016/j.mechmachtheory.2015.12.004.
  • Chen, Y., Y. Sun, and D. Yang. 2017. “Investigations on the Dynamic Characteristics of a Planar Slider-crank Mechanism for a High-speed Press System that Considers Joint Clearance.” Journal of Mechanical Science and Technology 31 (1): 75–85. doi:10.1007/s12206-016-1209-z.
  • Damir, M., E. Rashed, and A. Elkhatib. 2018. “Effect of Manufacturing Tolerances and Assembly Errors on the Characteristics of Small Scale Slider Crank Mechanisms.” 9th International Conference on Mechanical and Aerospace Engineering (ICMAE) (pp. 603–607). Budapest.
  • Desheng, A. 2019. “Dynamic Analysis of 6-SPS Parallel Mechanism with S Pairs Clearance.” Australian Journal of Mechanical Engineering 1–10. doi:10.1080/14484846.2019.1595880.
  • Du, X., P. Venigella, and D. Liu. 2009. “Robust Mechanism Synthesis with Random and Interval Variables.” Mechanism and Machine Theory 44 (7): 1321–1337. doi:10.1016/j.mechmachtheory.2008.10.003.
  • Erkaya, S. 2012. “Prediction of Vibration Characteristics of a Planar Mechanism Having Imperfect Joints Using Neural Network.” Journal of Mechanical Science and Technology 26 (5): 1419–1430. doi:10.1007/s12206-012-0308-8.
  • Flores, P., C. Koshy, H. Lankarani, J. Ambrósio, and J. Claro. 2011. “Numerical and Experimental Investigation on Multibody Systems with Revolute Clearance Joints.” Nonlinear Dynamics 65 (4): 383–398. doi:10.1007/s11071-010-9899-8.
  • Haroun, A., and S. Megahed. 2012. “Simulation and Experimentation of Multibody Mechanical Systems with Clearance Revolute Joints.” International Journal of Computer and Systems Engineering 6 (3): 658–667. doi:10.5281/zenodo.1080155.
  • Hroncová, D., M. Binda, P. Šarga, and F. Kičák. 2012. “Kinematical Analysis of Crank Slider Mechanism Using MSC Adams/View.” Procedia Engineering 48: 213–222. doi:10.1016/j.proeng.2012.09.507.
  • Hroncová, D., P. Frankovský, and G. Bettes. 2016. “Kinematical Analysis of Crank Slider Mechanism with Graphical Method and by Computer Simulation.” American Journal of Mechanical Engineering 4 (7): 329–343. doi:10.12691/ajme-4-7-18.
  • Huynh, N., T. Dao, T. Nguyen, H. Vu, L. Hoang, and H. Nguyen. 2018. “Effect of Clearance and Friction in Revolute Imperfect Joints on Dynamic Behaviors of a Slider-Crank Mechanism with Two Sliders.” Journal of Advanced Engineering and Computation 2 (1): 1–8. doi:10.25073/jaec.201821.73.
  • Khemili, I., M. Abdallah, and N. Aifaoui. 2019. “Multi-objective Optimization of a Flexible Slider-crank Mechanism Synthesis, Based on Dynamic Responses.” Engineering Optimization 51 (6): 978–999. doi:10.1080/0305215X.2018.1508574.
  • Matekar, S., and A. Fulambarkar. 2018. “Simulation and Experimental Validation of Slider Displacement in Slider Crank Mechanism with Connecting Rod Tolerance and Joint Clearance.” International Review of Mechanical Engineering 12 (12): 965–974. doi:10.15866/ireme.v12i12.15933.
  • Mu, J., T. Gang, and Z. Fu. 2015. “Dynamic Analysis of a Slider-crank Mechanism with Joint Clearance.” International Journal of Science 2 (1): 85–90.
  • Naeeni, I., A. Keshavarzi, and I. Fattahi. 2019. “Parametric Study on the Geometric and Kinetic Aspects of the Slider-Crank Mechanism.” Iranian Journal of Science and Technology Transactions of Mechanical Engineering 43 (3): 405–417. doi:10.1007/s40997-018-0214-5.
  • Šarga, P., D. Hroncová, and R. Rákay. 2015. “The MSC ADAMS/View and Simulation of the Crank Rocker Mechanism.” American Journal of Mechanical Engineering 3 (6): 161–164. doi:10.12691/ajme-3-6-1.
  • Shaomin, L., Y. Zou, X. Cheng, and L. Juan. 2020. “Dynamic Behavior Analysis of a Reciprocating Mechanism with Clearance considering Parameter Uncertainty.” Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 234 (6): 1182–1195. doi:10.1177/0954406219891196.
  • Sharma, R., and C. Ranjan. 2013. “Modelling and Simulation of Four-Bar Planar Mechanisms Using ADAMS.” International Journal of Mechanical Engineering and Technology 4 (2): 429–435.
  • Sun, J., and G. Xu. 2013. “Deviation Analysis and Optimization of Offset Slider-crank Mechanism Based on the Simulation.” Information Technology Journal 12 (12): 2390–2397. doi:10.3923/itj.2013.2390.2397.
  • Tan, H., Y. Hu, and L. Li. 2019. “Effect of Friction on the Dynamic Analysis of Slider-crank Mechanism with Clearance Joint.” International Journal of Non-Linear Mechanics 115: 20–40. doi:10.1016/j.ijnonlinmec.2019.04.009.
  • Wang, X., G. Liu, S. Ma, and R. Tong. 2019. “Study on Dynamic Responses of Planar Multibody Systems with Dry Revolute Clearance Joint: Numerical and Experimental Approaches.” Journal of Sound and Vibration 438: 116–138. doi:10.1016/j.jsv.2018.08.052.
  • Zhang, Z., L. Xu, P. Flores, and H. M. Lankarani. 2014. “A Kriging Model for Dynamics of Mechanical Systems with Revolute Joint Clearances.” Journal of Computational and Nonlinear Dynamics 9 (3): 031013-1. doi:10.1115/1.4026233.
  • Zhao, B., X. Dai, Z. Zhang, and Y. Xie. 2015. “Numerical Study of the Effects on Clearance Joint Wear in Flexible Multibody Mechanical Systems.” Tribology Transactions 58 (3): 385–396. doi:10.1080/10402004.2014.977475.
  • Zheng, X., R. Zhang, and Q. Wang. 2018. “Comparison and Analysis of Two Coulomb Friction Models on the Dynamic Behavior of Slider-crank Mechanism with a Revolute Clearance Joint.” Applied Mathematics and Mechanics 39 (9): 1239–1258. doi:10.1007/s10483-018-2371-9.

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