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仿生減阻深松鏟設計與試驗
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國家自然科學基金資助項目(51075185)、吉林省科技引導計劃資助項目(20100711)、吉林大學研究生創(chuàng)新基金資助項目(20121096)、黑龍江省教育廳科技研究資助項目(12531700)和佳木斯大學科技面上資助項目(L2012-011)


Design and Experiment of Bionic Anti-drag Subsoiler
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    摘要:

    將小家鼠爪趾高效的土壤挖掘性能應用于深松鏟減阻結構設計中,設計了鏟柄破土刃口為指數(shù)函數(shù)曲線型減阻深松鏟。為了對比耕作阻力,應用仿生減阻深松鏟與傳統(tǒng)深松鏟進行了田間深松耕作試驗。結果表明,耕深和前進速度對耕作阻力均有顯著影響,且耕作阻力隨著耕深和前進速度的增大而增大。在相同試驗條件下,仿生減阻深松鏟與傳統(tǒng)深松鏟相比,耕作阻力降低8.5%~39.5%,減阻效果明顯。

    Abstract:

    Efficient soil digging property of claw toe of Mus musculus was applied to the structure design of anti-drag subsoiler. The anti drag subsoiler had exponential curve shape of soil-cutting edge of shaft. To compare tillage resistance, the subsoiling experiments were conducted using bionic anti-drag subsoiler and traditional subsoiler. The results showed that both tillage depth and forward velocity could affect on subsoiling resistance significantly and the tillage resistance increased with the tillage depth and forward velocity. The tillage resistances of bionic anti-drag subsoiler were reduced by 8.5% to 39.5% respectively compared with traditional subsoiler under the same experimental conditions and the effect of reducing resistance was obvious.

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張金波,佟 金,馬云海.仿生減阻深松鏟設計與試驗[J].農(nóng)業(yè)機械學報,2014,45(4):141-145. Zhang Jinbo, Tong Jin, Ma Yunhai. Design and Experiment of Bionic Anti-drag Subsoiler[J]. Transactions of the Chinese Society for Agricultural Machinery,2014,45(4):141-145.

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  • 收稿日期:2013-10-26
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  • 在線發(fā)布日期: 2014-04-10
  • 出版日期: 2014-04-10
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