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非規(guī)則齒輪行星系扎穴機構反求設計與試驗
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“十二五”國家科技支撐計劃資助項目(2013BAD08B04)和國家自然科學基金資助項目(51205056)


Reverse Design and Experiment of Non-circular Gear Planetary System Picking Hole Mechanism
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    摘要:

    針對現(xiàn)有扎穴機構存在扎穴穴口大、入出土垂直度差等問題,設計了一種深施型液態(tài)施肥機非圓齒輪行星系扎穴機構。為使扎穴機構得到滿足農藝要求的入出土垂直度,提出了一種基于Matlab GUI開發(fā)平臺的非圓齒輪行星系扎穴機構反求設計與運動學仿真分析方法。通過微調靜軌跡曲線上的少量型值點,得到了一組機構最佳優(yōu)化參數(shù),應用Pro/E軟件建立扎穴機構模型,并利用ADAMS軟件對其進行模擬仿真,得到噴肥針尖點運動軌跡曲線。試驗臺試驗結果表明:穴口寬度為30.3mm、穴距為221.9mm,該扎穴機構能夠滿足噴肥針入出土垂直度好、穴口小的設計要求。

    Abstract:

    Aiming at the existing problems of big hole and bad verticality of picking hole mechanism, a kind of picking hole mechanism of noncircular gear planetary system for deep liquid fertilizer was designed. To make picking hole mechanism satisfy the agronomic required verticality when it gets into and out of the soil, the reverse design and kinematics simulation analysis of picking hole mechanism of noncircular gear planetary system were presented based on Matlab GUI development platform. Through the finetuning of a small amount of date points on static trajectories which were generated in the inverse design and kinematics simulation, a set of optimal parameters were obtained. The picking hole mechanism model was established by applying Pro/E software. And with the ADAMS software, the trajectory curves were got. Finally, this picking hole mechanism was tested on the testbed, and the results showed that when the hole width was 30.3mm and the hole distance was 221.9mm, the proposed picking hole mechanism could meet the design requirement, that means, good verticality and small hole when it gets into and out of the soil.

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王金武,周文琪,張春鳳,潘振偉,王金峰,唐 漢.非規(guī)則齒輪行星系扎穴機構反求設計與試驗[J].農業(yè)機械學報,2015,46(11):70-75. Wang Jinwu, Zhou Wenqi, Zhang Chunfeng, Pan Zhenwei, Wang Jinfeng, Tang Han. Reverse Design and Experiment of Non-circular Gear Planetary System Picking Hole Mechanism[J]. Transactions of the Chinese Society for Agricultural Machinery,2015,46(11):70-75.

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  • 收稿日期:2014-08-12
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  • 在線發(fā)布日期: 2015-11-10
  • 出版日期: 2015-11-10
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