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基于ADAMS的胶辊砻谷机脱壳效率影响参数仿真分析

王子啸 王旺平 宋少云

食品与机械2023,Vol.39Issue(12):83-87,5.
食品与机械2023,Vol.39Issue(12):83-87,5.DOI:10.13652/j.spjx.1003.5788.2023.80641

基于ADAMS的胶辊砻谷机脱壳效率影响参数仿真分析

Simulation analysis of the influencing parameters on the shelling efficiency of rubber roller husker based on ADAMS

王子啸 1王旺平 1宋少云1

作者信息

  • 1. 武汉轻工大学机械工程学院,湖北武汉 430048
  • 折叠

摘要

Abstract

Objective:Improve the hulling efficiency of the rice huller.Methods:Simulated the process of rice hulling,and analyzed the influence of various parameters on the hulling process by changing the movement speed of the rubber roller and the line speed difference.Firstly,the model of huller and the model of single-sided shelled brown rice were established in SolidWorks,and then the established model was imported into ADAMS for simulation,and the effects of the corresponding factors on the hulling efficiency of huller were observed by changing the rotational speeds of the fast and slow rollers,the difference in line speeds between the fast and slow rollers,and the friction coefficients between the rubber rollers and the hulls.Results:The faster of the speed of the fast and slow rollers was,the less time was needed to dehull the rice.The larger the difference between the linear speed of the fast and slow rollers was,the less time was needed to dehull the rice,but the change was very small.the larger the coefficient of friction between the rubber rollers and the hulls was,the less time was needed to dehull the rice,but the change was small comparing with that brought about by the change in the speed of the fast and slow rollers.Conclusion:For the diameter of 225 mm,rubber thickness of 25 mm,rubber roller rolling distance of 0.8 mm rubber roller huller,shelling efficiency was at the highest speed of the fast and slow roller speed of 16.5 m/s,13.4 m/s,the friction coefficient between the rubber rollers and hulls for 0.75.

关键词

碾米机/粮食机械/砻谷机/ADAMS仿真

Key words

rice milling machine/grain machinery/husker/ADAMS simulation

引用本文复制引用

王子啸,王旺平,宋少云..基于ADAMS的胶辊砻谷机脱壳效率影响参数仿真分析[J].食品与机械,2023,39(12):83-87,5.

基金项目

湖北省科技重大专项(编号:2022BBA0047) (编号:2022BBA0047)

食品与机械

OACSCDCSTPCD

1003-5788

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