二次抛送式棉秆粉碎还田装置优化设计与试验
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新疆维吾尔自治区重点研发计划项目(2022B02022-3)、新疆农业科学院农业科技创新稳定支持专项课题(xinkywdzc-2025-31-03)、农业农村部西北绿洲农业环境重点实验室开放基金项目(XBLZ-20242)、新疆棉花产业技术体系项目(XJARS-03)和新疆维吾尔自治区“揭榜挂帅”项目


Optimized Design and Experiment of Secondary Tossing Cotton Stalk Crushing and Returning Device
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    摘要:

    针对新疆棉秆粉碎还田过程中存在粉碎不均匀和秸秆掉落等问题,本文设计了一种二次抛送式棉秆粉碎还田装置。采用双螺旋线排布粉碎刀组与排风抛送刀组协同作业,结合导流风筒实现秸秆一级粉碎与二次抛送,通过理论分析确定关键部件结构形式与参数。为探明粉碎抛送过程工况参数对内部流场的影响,运用CFD模拟技术分析了粉碎刀轴转速、抛送刀轴转速和排风刀数量对内部流场影响。以粉碎刀轴转速、离地高度和抛送刀轴转速为试验因素,棉秆掉落率和棉秆粉碎合格率为评价指标,进行三因素三水平正交试验,获得参数优化组合:粉碎刀轴转速为2490r/min、离地高度为77mm、抛送刀轴转速为2870r/min,此时田间验证试验结果表明,棉秆掉落率为3.41%,棉秆粉碎合格率为97.85%,与优化预测值相对误差小于5%,满足行业标准要求。研究结果为棉秆高效还田及装备性能提升提供了技术支撑。

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    Aiming to address the issues of uneven crushing and straw drop during the cotton stalk fragmentation and returning process in Xinjiang, the design of a secondary wind-assisted cotton stalk crushing and returning device was optimized. The device employed a dual-helix crushing blade set and a wind-assisted conveying blade set for collaborative operation, integrating a diversion air duct to achieve primary crushing and secondary conveying of stalks. The structural configuration and parameters of key components were determined through theoretical analysis. To investigate the influence of operational parameters on the internal flow field during the crushing and conveying process, CFD simulations were conducted to analyze the effects of crushing blade shaft speed, conveying blade shaft speed, and the number of wind-assisted blades. A three-factor three-level orthogonal experiment was performed with crushing blade shaft speed, ground clearance, and conveying blade shaft speed as experimental variables, and stalk drop rate and crushing qualification rate as evaluation metrics. Parameter optimization yielded the optimal combination: crushing blade shaft speed of 2490r/min, ground clearance of 77mm, and conveying blade shaft speed of 2870r/min. Field validation tests under these conditions resulted in a stalk drop rate of 3.41% and a crushing qualification rate of 97.85%, with relative errors between experimental and theoretical values below 5%, meeting industry standards. This research can provide technical support for enhancing the efficiency of cotton stalk returning equipment.

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刘旋峰,张学军,周欣,王毅超,杨豫新,蒋永新,张海春.二次抛送式棉秆粉碎还田装置优化设计与试验[J].农业机械学报,2026,57(4):246-256. LIU Xuanfeng, ZHANG Xuejun, ZHOU Xin, WANG Yichao, YANG Yuxin, JIANG Yongxin, ZHANG Haichun. Optimized Design and Experiment of Secondary Tossing Cotton Stalk Crushing and Returning Device[J]. Transactions of the Chinese Society for Agricultural Machinery,2026,57(4):246-256.

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  • 收稿日期:2025-04-09
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  • 在线发布日期: 2026-02-15
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