农业工程学报
農業工程學報
농업공정학보
Transactions of the Chinese Society of Agricultural Engineering
2015年
18期
17-25
,共9页
李兆东%李姗姗%曹秀英%雷小龙%廖宜涛%韦跃培%廖庆喜
李兆東%李姍姍%曹秀英%雷小龍%廖宜濤%韋躍培%廖慶喜
리조동%리산산%조수영%뢰소룡%료의도%위약배%료경희
农业机械%种子%优化%排种器%充种%清种%气压式%油菜
農業機械%種子%優化%排種器%充種%清種%氣壓式%油菜
농업궤계%충자%우화%배충기%충충%청충%기압식%유채
agricultural machinery%seed%optimization%metering device%filling%cleaning%pneumatic-typed%rapeseed
为提高油菜精量气压式集排器的排种性能,该文通过对充种和清种2个基础过程解析,明确了影响排种性能的主要因素,确定了相关试验因素的范围,并以华油杂62种子为对象,采用 L27(313)正交试验设计研究了清种气嘴口截面形状、充填高度、清种气流流速和排种滚筒转速对集排器排种性能的影响。结果表明,清种气嘴口截面形状、充填高度、清种气流流速和排种滚筒转速对排种均匀性影响显著,清种气嘴口截面形状、充填高度和排种滚筒转速对各行排量一致性有显著影响,并确定了其较优参数组合。优化组合试验得出选择矩形截面形状的清种气嘴,充填高度27 mm,清种气流流速10 m/s,排种滚筒转速20 r/min的最佳参数条件下,排种均匀性变异系数为8.07%,各行排量一致性变异系数为1.95%,种子破损率低于0.1%。该研究为油菜精量气压式集排器结构优化与排种性能的提升提供了参考。
為提高油菜精量氣壓式集排器的排種性能,該文通過對充種和清種2箇基礎過程解析,明確瞭影響排種性能的主要因素,確定瞭相關試驗因素的範圍,併以華油雜62種子為對象,採用 L27(313)正交試驗設計研究瞭清種氣嘴口截麵形狀、充填高度、清種氣流流速和排種滾筒轉速對集排器排種性能的影響。結果錶明,清種氣嘴口截麵形狀、充填高度、清種氣流流速和排種滾筒轉速對排種均勻性影響顯著,清種氣嘴口截麵形狀、充填高度和排種滾筒轉速對各行排量一緻性有顯著影響,併確定瞭其較優參數組閤。優化組閤試驗得齣選擇矩形截麵形狀的清種氣嘴,充填高度27 mm,清種氣流流速10 m/s,排種滾筒轉速20 r/min的最佳參數條件下,排種均勻性變異繫數為8.07%,各行排量一緻性變異繫數為1.95%,種子破損率低于0.1%。該研究為油菜精量氣壓式集排器結構優化與排種性能的提升提供瞭參攷。
위제고유채정량기압식집배기적배충성능,해문통과대충충화청충2개기출과정해석,명학료영향배충성능적주요인소,학정료상관시험인소적범위,병이화유잡62충자위대상,채용 L27(313)정교시험설계연구료청충기취구절면형상、충전고도、청충기류류속화배충곤통전속대집배기배충성능적영향。결과표명,청충기취구절면형상、충전고도、청충기류류속화배충곤통전속대배충균균성영향현저,청충기취구절면형상、충전고도화배충곤통전속대각행배량일치성유현저영향,병학정료기교우삼수조합。우화조합시험득출선택구형절면형상적청충기취,충전고도27 mm,청충기류류속10 m/s,배충곤통전속20 r/min적최가삼수조건하,배충균균성변이계수위8.07%,각행배량일치성변이계수위1.95%,충자파손솔저우0.1%。해연구위유채정량기압식집배기결구우화여배충성능적제승제공료삼고。
The rapeseed precision seeding has the advantages of saving labor, time and cost, and high productivity and so on, and the rapes under the precision seeding have relatively consistent maturity, which are suitable for mechanized harvest. The rapeseed direct seeding is an important technical way to realize the sustainable development of rapeseed industry. In order to improve the seeding performance of the rapeseed pneumatic-typed precision centralized metering device, the main influence factors and their ranges were determined by analyzing the filling seed and clearing seed process. “Huayouza 62” was taken as experimental subject, while the cleaning angle was 53°, the protecting area angle was 90°, the throwing area angle was 110°, the protecting pressure difference was 150 Pa, and the section shape of air tap for clearing seed was circular and rectangular with the section area of 50.26 and 50 mm2, respectively. Three levels (8, 9, 10 m/s) were selected for the air velocity of clearing seed, 3 levels (19, 23, 27 mm) were selected for the filling height, and three levels (20, 30, 40 r/min) for the rotational speed of seeding cylinder. The speed of oil belt was 2.1-4.0 km/h. TheL27313orthogonal experiment was conducted to study the influence of cleaning seed and filling seed link on the performance of the centralized metering device on test bench. The influence factors were section shape of air tap for clearing seed, filling height, air velocity of cleaning seed and rotational speed of seeding cylinder, and the evaluation indices were coefficient of variation for seeding uniformity and variability coefficient of each row seeding quantity consistency. Results showed the order of the coefficient of variation for seeding uniformity was filling height > rotational speed of seeding cylinder > air velocity of cleaning seed > section shape of air tap for clearing seed; the order of the variability coefficient of each row seeding quantity consistency was filling height > section shape of air tap for clearing seed > rotational speed of seeding cylinder > air velocity of cleaning seed. Filling height, air velocity of cleaning seed and rotational speed of seeding cylinder obviously affected the seeding uniformity; section shape of air tap for clearing seed, filling height and rotational speed of seeding cylinder obviously affected the variability coefficient of each row seeding quantity consistency. Under the best working conditions that are section shape of air tap for clearing seed being rectangular, filling height of 27 mm; air velocity of cleaning seed of 10 m/s, rotational speed of seeding cylinder of 20 r/min, the coefficient of variation for seeding uniformity was 8.07%, and the variability coefficient of each row seeding quantity consistency was 1.95%, the damage rate was less than 0.1%. Thus improving the seeding performance of the rapeseed pneumatic-typed precision centralized metering device can be realized by expanding filling height, reducing rotational speed of seeding cylinder and auxiliary air for clearing seed.Also the hole, cone angle, seed-cleaning angle, relative situation between cleaning mouth and holes, and vibration are all main influence factors to the seeding performance. Based on the above results, further research is in urgent need for this rapeseed seeding metering device. The results provide the basis for the structure optimization of the pneumatic-typed precision centralized metering device and the improvement of its seeding performance.