Optimal design of planar slider-crank mechanism using teaching-learning-based optimization algorithm

被引:0
作者
Kailash Chaudhary
Himanshu Chaudhary
机构
[1] Malaviya National Institute of Technology Jaipur,Department of Mechanical Engineering
来源
Journal of Mechanical Science and Technology | 2015年 / 29卷
关键词
Dynamic balancing; Equimomental system; Link shape; Optimization; Slider-crank mechanism; Teaching-learning-based optimization algorithm;
D O I
暂无
中图分类号
学科分类号
摘要
In this paper, a two stage optimization technique is presented for optimum design of planar slider-crank mechanism. The slidercrank mechanism needs to be dynamically balanced to reduce vibrations and noise in the engine and to improve the vehicle performance. For dynamic balancing, minimization of the shaking force and the shaking moment is achieved by finding optimum mass distribution of crank and connecting rod using the equimomental system of point-masses in the first stage of the optimization. In the second stage, their shapes are synthesized systematically by closed parametric curve, i.e., cubic B-spline curve corresponding to the optimum inertial parameters found in the first stage. The multi-objective optimization problem to minimize both the shaking force and the shaking moment is solved using Teaching-learning-based optimization algorithm (TLBO) and its computational performance is compared with Genetic algorithm (GA).
引用
收藏
页码:5189 / 5198
页数:9
相关论文
共 72 条
  • [1] Lowen G. G.(1983)Balancing of linkages–an update Mechanism and Machine Theory 18 213-220
  • [2] Tepper F. R.(2005)Shaking force and shaking moment balancing of mechanisms: a historical review with new examples ASME Journal of Mechanical Design 127 334-339
  • [3] Berkof R. S.(1978)A general theory of force balancing using counterweights Mechanism and Machine Theory 13 175-185
  • [4] Arakelian V. H.(1972)General theorems concerning full force balancing of planar linkages by internal mass redistribution ASME Journal of Engineering for Industry 94 789-796
  • [5] Smith M. R.(1988)A new general method for full force balancing of planar linkages Mechanism and Machine Theory 23 475-480
  • [6] Walker M. J.(1974)The quantitative influence of complete force balancing on the forces and moments of certain families of four-bar linkages Mechanism and Machine Theory 9 299-323
  • [7] Oldham K.(1973)Complete force and moment balancing of inline four-bar linkage Mechanism and Machine Theory 8 397-410
  • [8] Tepper F. R.(1990)Complete shaking force and shaking moment balancing of 26 types of four-, five-and six-bar linkages with prismatic pairs Mechanism and Machine Theory 25 183-192
  • [9] Lowen G. G.(1999)A theory of complete force and moment balancing of planar linkage mechanisms Mechanism and Machine Theory 34 903-922
  • [10] Kochev I. S.(1982)Complete shaking force and shaking moment balancing of link mechanisms using balancing idler loops ASME Journal of Mechanical Design 104 482-493