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Design and Performance Evaluation of a Rotary Tillage–Press–Burying Combined Machine for Regulating Maize Straw Spatial Distribution

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  • Lijun Wang

    (College of Agricultural Equipment and Energy Engineering, Northeast Agricultural University, Harbin 150030, China
    Key Laboratory of High Efficient Seeding and Harvesting Equipment, Ministry of Agriculture and Rural Affairs, Northeast Agriculture University, Harbin 150030, China)

  • Yunpeng Gao

    (College of Agricultural Equipment and Energy Engineering, Northeast Agricultural University, Harbin 150030, China
    Key Laboratory of High Efficient Seeding and Harvesting Equipment, Ministry of Agriculture and Rural Affairs, Northeast Agriculture University, Harbin 150030, China)

  • Yongfu Zhang

    (College of Agricultural Equipment and Energy Engineering, Northeast Agricultural University, Harbin 150030, China
    Key Laboratory of High Efficient Seeding and Harvesting Equipment, Ministry of Agriculture and Rural Affairs, Northeast Agriculture University, Harbin 150030, China)

  • Zhanfeng Sun

    (Northeast Agricultural University, Harbin 150030, China)

Abstract

Conventional rotary straw return results in high straw content and uneven distribution within the shallow seedbed, which adversely affects maize sowing operations. To address this issue, a two-stage combined straw return machine with front-mounted rotary blades and rear-mounted burying fingers was developed, and an equiangular slide-cutting burying finger was designed to match the combined operation. A coupled discrete element model of soil–straw–root stubble-implement interactions was established based on sliding cutting theory, and single-factor tests were conducted to investigate the effects of forward speed, burial depth and slide-cutting angle on straw distribution uniformity, straw mass proportion in the 0–5 cm soil layer and power consumption. Field trials were carried out for validation. The results show that, under optimal parameters, the combined machine reduces the standard deviation of straw distribution by 15.89–23.55% and the straw mass proportion in the 0–5 cm layer by 12.41–13.20% compared with a traditional rotary tiller, with a power increase of 19.01–20.85%. This study provides a quantitative reference for improving seedbed quality following straw incorporation in the black soil region of Northeast China.

Suggested Citation

  • Lijun Wang & Yunpeng Gao & Yongfu Zhang & Zhanfeng Sun, 2026. "Design and Performance Evaluation of a Rotary Tillage–Press–Burying Combined Machine for Regulating Maize Straw Spatial Distribution," Agriculture, MDPI, vol. 16(15), pages 1-29, July.
  • Handle: RePEc:gam:jagris:v:16:y:2026:i:15:p:1616-:d:2002104
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