农业工程学报
農業工程學報
농업공정학보
2014年
23期
1-9
,共9页
顾峰玮%胡志超%吴惠昌%彭宝良%高学梅%王申莹
顧峰瑋%鬍誌超%吳惠昌%彭寶良%高學梅%王申瑩
고봉위%호지초%오혜창%팽보량%고학매%왕신형
联合收获机%机械化%收获%研制%甜菜
聯閤收穫機%機械化%收穫%研製%甜菜
연합수획궤%궤계화%수획%연제%첨채
combines%mechanization%harvesting%development%sugar beer
针对中国北方甜菜主产区机械化收获水平低下、缺乏先进适用的国产甜菜联合收获技术装备问题,研制了一种可自动对行纠偏的错行作业挖掘型甜菜联合收获机。该机配套50 kW以上拖拉机,一次作业2行,完成打叶切顶、挖掘输送、清杂装卸作业,纯生产率大于0.3 hm2/h,适宜种植形式为单垄单行、种植面积适中、对象为农场和种植大户收获使用。田间试验表明,该机收获质量良好,块根含杂率小于2%,块根折断率小于3.5%,切顶合格率大于85%,块根损失率小于4%,各项指标达到国家规定标准,符合甜菜收获要求。该研究攻克的自动对行纠偏、仿形切顶、低损挖掘等技术为推进主产区甜菜联合收获技术装备的自主研发提供参考。
針對中國北方甜菜主產區機械化收穫水平低下、缺乏先進適用的國產甜菜聯閤收穫技術裝備問題,研製瞭一種可自動對行糾偏的錯行作業挖掘型甜菜聯閤收穫機。該機配套50 kW以上拖拉機,一次作業2行,完成打葉切頂、挖掘輸送、清雜裝卸作業,純生產率大于0.3 hm2/h,適宜種植形式為單壟單行、種植麵積適中、對象為農場和種植大戶收穫使用。田間試驗錶明,該機收穫質量良好,塊根含雜率小于2%,塊根摺斷率小于3.5%,切頂閤格率大于85%,塊根損失率小于4%,各項指標達到國傢規定標準,符閤甜菜收穫要求。該研究攻剋的自動對行糾偏、倣形切頂、低損挖掘等技術為推進主產區甜菜聯閤收穫技術裝備的自主研髮提供參攷。
침대중국북방첨채주산구궤계화수획수평저하、결핍선진괄용적국산첨채연합수획기술장비문제,연제료일충가자동대행규편적착행작업알굴형첨채연합수획궤。해궤배투50 kW이상타랍궤,일차작업2행,완성타협절정、알굴수송、청잡장사작업,순생산솔대우0.3 hm2/h,괄의충식형식위단롱단행、충식면적괄중、대상위농장화충식대호수획사용。전간시험표명,해궤수획질량량호,괴근함잡솔소우2%,괴근절단솔소우3.5%,절정합격솔대우85%,괴근손실솔소우4%,각항지표체도국가규정표준,부합첨채수획요구。해연구공극적자동대행규편、방형절정、저손알굴등기술위추진주산구첨채연합수획기술장비적자주연발제공삼고。
Sugar beet was the most important source of sugar in the sugar industry, with the sugar amounting to about 17% of China's total sugar production. As a seasonal operation, sugar beet harvesting in China was still mainly manual work, having the problems of high labor intensity, low efficiency, great harvest losses and huge occupation of farming and so on, which constrained the further development of the sugar beet industry. Mechanized harvesting was the inevitable development trend of sugar beet harvest. Beet harvest mechanization development had lagged in our country for a long time. And we were lack of a thorough system research about sugar beet harvest mechanization technology, especially the advanced combine technology. The current domestic sugar beet harvesters were basically simple sectional operating machinery. Sugar beet combine harvesters were mainly imported from abroad, having high automation and intelligence degree and advanced performance. But imported machines had the problems of poor adaptability and high prices. The domestic beet combines were still in the prototype development stage, having a great gap with the advanced foreign technology. In order to improve the mechanization level and reduce the costs of sugar beet harvest machine, a staggered-dig sugar beet combine was developed, fully digesting and absorbing advanced technology, combined with the sugar beet grain planting scale, economic conditions, and the present situation of domestic machinery manufacturing level. The overall structure includes traction frame, row detection mechanism, round coulter, copying cut top institution, digging and conveying institution, side of threshing mechanism, walking system, cage type rotary lifting device, conveying equipment, main frame, stock bin, top conveyer and so on. The sugar beet combine adopted the key technologies such as top contour cutting, auto-follow row system, hydraulic technology, sensor signal acquisition technology and microprocessor control technology. While working, the combine harvester was dragged forward by tractor, copying cut top institution and sides of threshing mechanism finished cut the top and hit the leaf. Row detection mechanism detects the position of the ridge top beetroot block, converts the offsets of excavation forward locus to angle quantity, and then sends to the offset angle acquisition sensor. The offset angle acquisition sensor converts angle information to digital signal, and sends it to the controller. Controller handles angle signal and outputs a control signal for the solenoid valve, through the control software analysis, open hydraulic cylinder drive oil line. The hydraulic cylinder drives the traction biasing mechanism, adjusting the digging position. The adjacent inter-row twining stem and leaf were cut off by round coulter in time, guaranteeing the smoothness of mining harvest. Digging and conveying institution dug the beet root out, and then were delivered into the stock bin by cage type rotary lifting device. The results of Experiments showed that the harvester operating smoothly and reliably, the root impurity rate was less than 2%, the root fracture rate was less than 3.5%, the loss rate of beet root was less than 4%, and the toppers pass rate was greater than 85%. All indicators had reached the national standard, in line with the requirements of beet harvest. The study of auto-follow row technology, top contour cutting technology, and low damage mining technology can provide effective reference for the independent research and development of sugar beet harvesting machinery.