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Structural Analysis and Application of Non-Standard Components Based on Genetic Algorithm

1, 2,*, 1 and 1
1
School of Electrical and Electronic Engineering, Chongqing Vocational and Technical University of Mechatronics, Chongqing 402760, China
2
School of Mechanical Engineering, Xi’an Jiaotong University, Xi’an 710049, China
*
Author to whom correspondence should be addressed.
Algorithms 2019, 12(8), 169; https://doi.org/10.3390/a12080169
Received: 20 July 2019 / Revised: 2 August 2019 / Accepted: 6 August 2019 / Published: 15 August 2019
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Abstract

Aiming at the problems of low efficiency, heavy quality, and high cost of traditional components, it is necessary to study a design and analysis method of non-standard components. Taking the non-standard parts-turret loading and -unloading device as the carrier, the key parts of the non-standard parts are extracted for structural design and the multi-objective mathematical model and modal theory model are established. The optimization analysis of the key parts is carried out by genetic algorithm. Finally, the optimization results are compared and simulated by ANSYS Workbench. The results show that: in this case, the genetic algorithm optimized data with other data, the overall quality difference is 4.1%. The first six order modal values in the optimized results are in the range of 68 Hz to 130 Hz, which provides a basis for similar research in the future. View Full-Text
Keywords: non-standard parts; algorithm analysis; multi-objective; optimization analysis non-standard parts; algorithm analysis; multi-objective; optimization analysis
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Lei, Z.; Lai, H.; Hua, Z.; Hua, C. Structural Analysis and Application of Non-Standard Components Based on Genetic Algorithm. Algorithms 2019, 12, 169.

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