振动对气力式油菜精量排种器性能影响
CSTR:
作者:
作者单位:

1.华中农业大学工学院,武汉 430070;2.农业农村部长江中下游农业装备重点实验室,武汉 430070

通讯作者:

廖宜涛,E-mail: liaoetao@mail.hzau.edu.cn

中图分类号:

S223.2+3

基金项目:

国家自然科学基金项目(51975238;51875229);国家油菜产业技术体系专项(CARS-12)郑娟,E-mail:zhengjuan@webmail.hzau.edu.cn


Effect of vibration on performance of pneumatic rapeseed precision metering device
Author:
Affiliation:

1.College of Engineering, Huazhong Agricultural University, Wuhan 430070, China;2.Key Laboratory of Agricultural Equipment in Mid-Lower Yangtze River, Ministry of Agriculture and Rural Affairs, Wuhan 430070, China

  • 摘要
  • |
  • 图/表
  • |
  • 访问统计
  • |
  • 参考文献 [20]
  • | | | |
  • 文章评论
    摘要:

    针对机械振动改变种子受力和运移状态,继而导致精量排种器性能降低的问题,基于振动排种器性能检测试验台,开展无振动、不同振频、不同振幅对油菜精量排种器排种性能影响规律试验。结果显示:无振动条件下,吸种负压达到临界点前(合格指数≥90%所对应负压值)排种性能指标变化规律与转速大小规律相关,转速越大,合格指数和漏播指数指标值整体偏低,呈降低趋势;10、20 Hz振频时,振动导致排种器垂直方向位移增大,投种无序性加大,合格指数始终<80%,明显低于无振动和30 Hz振频,30 Hz振频时临界负压绝对值较无振动时略低,负压绝对值高于临界负压绝对值时的合格指数>90%;40 Hz振频、振幅≥8 m/s2时充种室及吸种区种群呈现“沸腾”状态,低吸种负压绝对值即可实现高合格指数,并可降低高负压绝对值时型孔重吸率。不同频率振幅工况组合下,吸种临界负压绝对值差异显著,达临界值前吸种负压对应的排种合格指数存在明显差异,达临界值后机械振动影响降低。

    Abstract:

    Aiming at the problem that mechanical vibration changes the force and transport state of seeds, which then leads to the reduction of precision seeding performance, an experimental study was conducted on the effect of vibration frequency and amplitude on the seeding performance of rapeseed precision seeder based on the vibration seeder performance testing test bench. The results showed that the critical negative pressure at 30 Hz vibration frequency is slightly lower than the state without vibration, and the qualification index is higher than 90% after the critical negative pressure, at 10 Hz and 20 Hz vibration frequency, the vibration causes the increase of vertical displacement of seed metering device, and the increase of seed feeding disorder, and the seed throwing qualification index is always less than 80%, which is obviously lower than no vibration and 30 Hz vibration frequency. Under the condition of 40 Hz vibration frequency and amplitude ≥8 m/s2, the seed filling chamber and seed suction area showed the state of “boiling”, and the higher qualification index can be obtained at a lower seed suction negative pressure, and the vibration under the higher negative pressure will reduce the resorption rate of shaped hole. With different combinations of frequency and amplitude conditions, the critical negative pressure of seed suction varied significantly, and the seed discharge qualification index corresponding to the negative pressure of seed suction before reaching the critical value was significantly different, and the influence of mechanical vibration was reduced after reaching the critical value. This study provides a reference for the improvement of the vibration adaptive structure of rape precision seed raiser, and provides a basis for the research on increasing the beneficial vibration interval or reducing the vibration interference in production.

    表 1 试验用华油杂62油菜种子几何特征Table 1 Mechanical and physical properties of Huayouza 62
    图1 振动排种试验台总体布局(A)及排种器结构示意(B)Fig.1 General layout of vibration seeding test stand(A) and structure schematic(B)
    图2 无振动条件下试验指标与吸种负压的关系Fig.2 Relation of curve between test index and negative pressure of seed suction under non-vibration condition
    图3 低频各频率吸种负压与合格指数关系Fig.3 Relation curve between negative pressure of seed suction at low frequency and qualification index
    图4 振频为10和20 Hz时吸种负压与试验指标关系Fig.4 Relation curve between negative pressure of seed suction and test index at 10 Hz and 20 Hz vibration frequency
    图5 中频各频率吸种负压与合格指数关系Fig.5 Relation curve between negative pressure of seed suction at medium frequency and qualification index
    图6 40 Hz振频下试验指标与吸种负压的关系Fig.6 Relation curve between test index and seed suction negative pressure at 40 Hz vibration frequency
    图7 高频各频率吸种负压与合格指数关系Fig.7 Relation curve between negative pressure of seed suction at high frequencies and qualification index
    图8 不同振幅吸种负压与合格指数关系Fig.8 Relation curve between negative pressure of seed suction with different amplitudes and qualification index
    表 2 不同转速振频40 Hz与无振动条件排种器临界负压值对比Table 2 Comparison of critical negative pressure of seed-metering device with different speed vibration frequency of 40 Hz and without vibration conditions
    参考文献
    [1] 万星宇,廖庆喜,廖宜涛,等.油菜全产业链机械化智能化关键技术装备研究现状及发展趋势[J].华中农业大学学报,2021,40(2):24-44.WAN X Y,LIAO Q X,LIAO Y T,et al.Situation and prospect of key technology and equipment in mechanization and intelligentization of rapeseed whole industry chain[J].Journal of Huazhong Agricultural University,2021,40(2):24-44 (in Chinese with English abstract).
    [2] 张青松,廖庆喜,肖文立,等.油菜种植耕整地技术装备研究与发展[J].中国油料作物学报,2018,40(5):702-711.ZHANG Q S,LIAO Q X,XIAO W L,et al.Research process of tillage technology and equipment for rapeseed growing[J].Chinese journal of oil crop sciences,2018,40(5):702-711 (in Chinese with English abstract).
    [3] 杨丽,颜丙新,张东兴,等.玉米精密播种技术研究进展[J].农业机械学报,2016,47(11):38-48.YANG L,YAN B X,ZHANG D X,et al.Research progress on precision planting technology of maize[J].Transactions of the CSAM,2016,47(11):38-48 (in Chinese with English abstract).
    [4] 廖宜涛,高丽萍,廖庆喜,等.油菜精量联合直播机深施肥装置设计与试验[J].农业机械学报,2020,51(2):65-75.LIAO Y T,GAO L P,LIAO Q X,et al.Design and test of side deep fertilizing device of combined precision rapeseed seeder[J].Transactions of the CSAM,2020,51(2):65-75 (in Chinese with English abstract).
    [5] 廖庆喜,雷小龙,廖宜涛,等.油菜精量播种技术研究进展[J].农业机械学报,2017,48(9):1-16.LIAO Q X,LEI X L,LIAO Y T,et al.Research progress of precision seeding for rapeseed[J].Transactions of the CSAM,2017,48(9):1-16 (in Chinese with English abstract).
    [6] 田波平,廖庆喜,黄海东,等.2BFQ-6型油菜精量联合直播机的设计[J].农业机械学报,2008,39(10):211-213.TIAN B P,LIAO Q X,HUANG H D,et al.Design of 2BFQ-6 rape precision combined direct seeding machine[J].Transactions of the CSAM,2008,39(10):211-213 (in Chinese with English abstract).
    [7] 廖庆喜,杨松,廖宜涛,等.油菜精量联合直播机气力排种系统性能和参数建模[J].农业工程学报,2013,29(17):9-15.LIAO Q X,YANG S,LIAO Y T,et al.Modeling for performance and parameters of pneumatic seed-metering system of precision planter for rapeseed[J].Transactions of the CSAE,2013,29(17):9-15 (in Chinese with English abstract).
    [8] 廖庆喜,李继波,覃国良.气力式油菜精量排种器试验[J].农业机械学报,2009,40(8):44-48.LIAO Q X,LI J B,QIN G L.Experiment of pneumatic precision metering device for rapeseed[J].Transactions of the CSAM,2009,40(8):44-48 (in Chinese with English abstract).
    [9] 丛锦玲,余佳佳,曹秀英,等.油菜小麦兼用型气力式精量排种器[J].农业机械学报,2014,45(1):46-52.CONG J L,YU J J,CAO X Y,et al.Design of dual-purpose pneumatic precision metering device for rape and wheat[J].Transactions of the CSAM,2014,45(1):46-52 (in Chinese with English abstract).
    [10] 舒彩霞,韦跃培,廖宜涛,等.油菜气力式排种系统参数对其负压特性的影响及风机选型[J].农业工程学报,2016,32(10):26-33.SHU C X,WEI Y P,LIAO Y T,et al.Influence of air blower parameters of pneumatic seed-metering system for rapeseed on negative pressure characteristics and air blower selection[J].Transactions of the CSAE,2016,32(10):26-33 (in Chinese with English abstract).
    [11] 盛美萍,杨宏晖.振动信号处理[M].北京:电子工业出版社,2017.SHENG M P,YANG H H.Vibration signal processing[M].Beijing:Publishing House of Electronics Industry,2017(in Chinese).
    [12] 杨自栋,耿端阳,彭丽芳,等.基于农田不平度的拖拉机机组输入谱推导与振动仿真[J].农业机械学报,2009,40(12):62-66.YANG Z D,GENG D Y,PENG L F,et al.Deduction of input spectrum of tractor-implement combination and vibration simulation base on farm surface roughness[J].Transactions of the CSAM,2009,40(12):62-66 (in Chinese with English abstract).
    [13] 鹿芳媛,马旭,齐龙,等.基于离散元法的杂交稻振动匀种装置参数优化与试验[J].农业工程学报,2016,32(10):17-25.LU F Y,MA X,QI L,et al.Parameter optimization and experiment of vibration seed-uniforming device for hybrid rice based on discrete element method[J].Transactions of the CSAE,2016,32(10):17-25 (in Chinese with English abstract).
    [14] MIN Y B,KIM S T,KWON H D,et al. Effect of the seed hopper vibration on the seeding performance of the vacuum suction nozzle seeder[J].Journal of biosystems engineering,2008,33(3):179-185.
    [15] 张石平,陈进,李耀明.振动气吸式穴盘精量播种装置种子群“沸腾”运动分析[J].农业工程学报,2008,24(7):20-24.ZHANG S P,CHEN J,LI Y M.Analysis of seeds ‘Boiling’ motion on vibrational air-suction tray seeder[J].Transactions of the CSAE,2008,24(7):20-24 (in Chinese with English abstract).
    [16] 张涛,刘飞,赵满全,等.基于离散元的排种器排种室内玉米种群运动规律[J].农业工程学报,2016,32(22):27-35.ZHANG T,LIU F,ZHAO M Q,et al.Movement law of maize population in seed room of seed metering device based on discrete element method[J].Transactions of the CSAE,2016,32(22):27-35 (in Chinese with English abstract).
    [17] 王奇,朱龙图,李名伟,等.指夹式玉米免耕精密播种机振动特性及对排种性能的影响[J].农业工程学报,2019,35(9):9-18.WANG Q,ZHU L T,LI M W,et al.Vibration characteristics of corn no-tillage finger-type precision planter and its effect on seeding performance[J].Transactions of the CSAE,2019,35(9):9-18 (in Chinese with English abstract).
    [18] 余佳佳.气力式油菜精量排种器结构解析与排种过程仿真研究[D].武汉:华中农业大学,2013.YU J J.Study on structural analysis and metering process simulation of pneumatic pricision metering device for rapeseed[D].Wuhan:Huazhong Agricultural University,2013 (in Chinese with English abstract).
    [19] 廖宜涛,廖庆喜,王磊,等.气力式小粒径种子精量排种器吸种效果影响因素研究[J].农业工程学报,2018,34(24):10-17.LIAO Y T,LIAO Q X,WANG L,et al.Investigation on vacuum singulating effect influencing factors of pneumatic precision seed metering device for small particle size of seeds[J].Transactions of the CSAE,2018,34(24):10-17 (in Chinese with English abstract).
    [20] 廖宜涛,齐天翔,廖庆喜,等.气力式油菜精量联合直播机振动特性及对排种性能影响[J].吉林大学学报(工学版),2022,52(5):1184-1196.LIAO Y T,QI T X,LIAO Q X,et al.Vibration characteristics of pneumatic combined precision rapeseed seeder and its effect on seeding performance[J].Journal of Jilin University (engineering and technology edition),2022,52(5):1184-1196 (in Chinese with English abstract).
    相似文献
    引证文献
    网友评论
    网友评论
    分享到微博
    发 布
引用本文

郑娟,廖宜涛,齐天翔,廖庆喜,高丽萍,刘嘉诚.振动对气力式油菜精量排种器性能影响[J].华中农业大学学报,2023,42(2):233-242

复制
分享
文章指标
  • 点击次数:650
  • 下载次数: 932
  • HTML阅读次数: 75
  • 引用次数: 0
历史
  • 收稿日期:2022-09-07
  • 在线发布日期: 2023-03-31
文章二维码