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Design of corn germ extractor based on S7-1200 PLC

Published: 29 December 2018 Publication History

Abstract

The experiment found that the use of profiling tool to remove corn seed coat, and then the exposed corn germ was impacted with a certain pressure of water to complete the extraction. According to the above principle, the theoretical analysis of the conveying, fixing, cutting and extracting mechanism of the corn germ extractor is carried out, and the key parameters are obtained and the structural design is completed. Then use SolidWorks software to model the parts and assemble them into virtual prototypes. PLC and frequency converter are used as the control core to realize the frequency conversion speed regulation of the motor and complete the automatic adjustment of the chuck speed. Combined with the angle sensor to control the movement of the cutting mechanism tool, it can complete the fixing and cutting work of corn efficiently, quickly and stably. The corn germ extracted by the design can ensure the integrity of the corn germ and ensure the purity of the corn germ.

References

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Xiao Anhong, Pan Congdao. Research on Maize Extracting Embryos{J}. Journal of Wuhan Polytechnic University, 2003, (03): 12--16.
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Yang Yonghuai, Wen Xiaolong. Maize semi-wet method for extracting powder and its comprehensive utilization{J}. Food and feed industry, 2001,(04):48--49.
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Cui Guigui, Cui Chengliang. Problems in corn germ extraction and oil production{J}. China Oils and Fats, 2010, (04): 40--41.
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Tang Youliang, Li Bo, Yuan Meng, et al. Virtual prototyping technology and its application in engine design {J}. Mechanical Design and Manufacturing, 2012(1): 65--66.
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Yue Shuangjie, Fan Xiumin, Ma Yanjun, et al. Parametric modeling and simulation analysis of cone crusher virtual prototype {J}. China Mechanical Engineering, 2011 (22): 2712--2716.
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Yin Chenglong, Zhu Lin, Chang Jing, et al. Virtual design of new corn planter based on Solidworks {J}. Agricultural Science and Technology, 2009 (4): 58--60.
[7]
Siemens Co., Ltd. In-depth explanation of Siemens S7--1200 PLC {M}. Beijing University of Aeronautics and Astronautics Press, 2009.
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Berger H. Automating with SIMATIC S7--1200{J}. John Wiley Professio, 2013.
[9]
Zhu Wenjie. Programming and Application of S7--1200 PLC {M}. China Electric Power Press, 2015.
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Hejun Yao, Fushun Yuan (2018). Exponential Stability Control for Networked System with Interval Distribution Time Delays. Acta Informatica Malaysia, 2(1): 07--09.

Cited By

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  • (2023)Design of Control System for Wire Harness Automatic Covering Equipment Based on Industrial RobotProceedings of the 2023 7th International Conference on High Performance Compilation, Computing and Communications10.1145/3606043.3606089(327-332)Online publication date: 17-Jun-2023

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cover image ACM Other conferences
ISBDAI '18: Proceedings of the International Symposium on Big Data and Artificial Intelligence
December 2018
365 pages
ISBN:9781450365703
DOI:10.1145/3305275
Permission to make digital or hard copies of all or part of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for components of this work owned by others than ACM must be honored. Abstracting with credit is permitted. To copy otherwise, or republish, to post on servers or to redistribute to lists, requires prior specific permission and/or a fee. Request permissions from [email protected]

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  • International Engineering and Technology Institute, Hong Kong: International Engineering and Technology Institute, Hong Kong

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Association for Computing Machinery

New York, NY, United States

Publication History

Published: 29 December 2018

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Author Tags

  1. PLC
  2. corn germ removal
  3. frequency control
  4. virtual prototype

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  • Short-paper
  • Research
  • Refereed limited

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ISBDAI '18

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ISBDAI '18 Paper Acceptance Rate 70 of 340 submissions, 21%;
Overall Acceptance Rate 70 of 340 submissions, 21%

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Cited By

View all
  • (2023)Design of Control System for Wire Harness Automatic Covering Equipment Based on Industrial RobotProceedings of the 2023 7th International Conference on High Performance Compilation, Computing and Communications10.1145/3606043.3606089(327-332)Online publication date: 17-Jun-2023

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