摘要
针对南方地区大豆草谷比和未成熟豆荚占比高,造成收获机脱粒清选分离质量差、功耗大等问题,设计了一种前后两段组合且两段转速差可调的脱粒滚筒,研究了脱粒滚筒参数变化对豆荚和籽粒的能量、等效形变量等的影响。以脱粒齿类型、前段滚筒转速、两段滚筒转速差为影响因素,以破碎率、未脱净率和夹带损失率为评价指标,得到了差速与非差速脱粒滚筒的最优参数组合,并通过综合性能试验对比了两种脱粒滚筒的脱粒质量、作业油耗和工作效率。结果表明,差速脱粒滚筒最优参数组合是脱粒齿类型为纹杆齿-杆齿组合式脱粒齿,前段滚筒转速为450 r/min,两段滚筒转速差为150 r/min。此时,相较于传统的杆齿式非差速脱粒滚筒,脱粒质量更高,油耗降低了2.7 L/hm^(2),最大作业效率增大了10.35%。该研究能够为解决南方地区大豆联合收获机脱粒装置适应性问题提供依据。
The threshing cylinder of the combine was used for soybean threshing and auxiliary soybean separation.However,soybean in Southern China has a high ratio of grass to grain and immature pods during harvest.The existing nondifferential speed threshing cylinder has poor adaptability to this feature,resulting in low threshing quality,low operating efficiency and high fuel consumption in the harvesting process.Therefore,this study aims to improve the adaptability and comprehensive performance of the threshing cylinder of soybean combine harvester in Southern China.Aims at the high ratio of grass to grain and the proportion of immature pods in soybean harvest in Southern China,a longitudinal axial flow differential threshing cylinder with adjustable cylinder speed difference was designed,it's front cylinder threshes the pods that are easy to thresh at a lower rotating speed,while the rear cylinder threshes the pods that are difficult to thresh at a higher rotating speed.And two types of threshing teeth were made,the full rod tooth threshing teeth was the front and rear cylinders were adopt rod teeth,and the rasp-rod combined threshing teeth was the front cylinder adopts the rasp bar,and the rear cylinder adopts the rod teeth.At the same time,in order to study the impact of the structure and parameters of the threshing cylinder on the threshing quality,the type of the threshing teeth,front cylinder speed and cylinder speed difference related to the threshing cylinder are selected as factors,and the Epicit Dnamics module of ANSYS software was used to analyze the impact of different factors on material changes from the perspective of energy and shape variables.It can be speculated that the cylinder with the rasp-rod combined threshing teeth has lower the percentage of broken,the percentage of unthreshed and the percentage of separation loss grains.In the end,the optimal parameter combination of the differential threshing cylinder and the traditional nondifferential threshing cylinder was obtained through experimental analysis,and the threshing quality,operating oil consumption and maximum operating efficiency of the two threshing cylinders are compared under the optimal parameter combination,evaluated the comprehensive working quality of the threshing cylinder,which provides a reference for the research of soybean harvester threshing device in many aspects.In the field test,due to the limitation of test cycle and safety,it is impossible to measure the fuel consumption and maximum operating efficiency in each group of tests.Therefore,the percentage of broken,the percentage of unthreshed and the percentage of separation loss that reflect threshing quality are taken as evaluation indicators,and a single factor comparative test was conducted,and the fuzzy comprehensive evaluation method was adopted,It was determined that the threshing cylinder most suitable for soybean characteristics in the Southern China was the differential speed threshing cylinder,and the threshing teeth type was the rasp-rod combined threshing teeth.The optimal parameter combination was:the speed of the front cylinder was 450 r/min,the speed difference of the cylinder was 150 r/min,and the optimal rotational speed of the traditional nondifferential speed threshing cylinder with rod tooth was 500 r/min.Under the optimal parameter combination,the comprehensive performance comparison test of two threshing cylinders was carried out.The results showed that the threshing quality of the differential threshing cylinder was higher,its fuzzy comprehensive evaluation value was 0.4 higher than that of the traditional rod tooth threshing cylinder,the fuel consumption was 2.7 L/hm^(2) lower,and the working efficiency was 10.35% higher,It was proved that the differential speed threshing cylinder with the rasp-rod combined threshing teeth can improve the adaptability and comprehensive working performance of the harvester to soybeans.This discovery provides a favorable technical support for mechanized soybean harvesting in Southern China.
作者
康家鑫
王修善
谢方平
罗曜
李奇
黄晓军
KANG Jiaxin;WANG Xiushan;XIE Fangping;LUO Yao;LI Qi;HUANG Xiaojun(Department of Mechanical and Electrical Engineering,Hunan Agricultural University,Changsha 410128,China;Hunan Key Laboratory of Intelligent Agricultural Machinery Equipment,Changsha 410128,China;Hunan Nongyou Machinery Corporation,Loudi 417700,China)
出处
《农业工程学报》
EI
CAS
CSCD
北大核心
2023年第1期38-49,共12页
Transactions of the Chinese Society of Agricultural Engineering
基金
湖南省高新技术产业引领计划项目(2020NK2002)
湖南省旱粮产业技术体系。
关键词
农业机械
大豆
收获机
南方地区
差速脱粒滚筒
模糊综合评价法
agricultural machinery
soybean
harvester
southern region
differential threshing cylinder
fuzzy comprehensive evaluation method