基于SPH-FEM大蒜切茎装置动力学分析及参数优化
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江苏省现代农业装备与技术示范推广项目(NJ2021-12、NJ2022-09)


Kinetic Analysis and Parameter Optimization of Garlic Stem Cutting Device Based on SPH-FEM
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    摘要:

    针对目前大蒜联合收获机切茎装置切削性能较差、切割阻力较大、切割不及时易造成大蒜鳞茎损伤以及夹持输送装置堵塞等问题,基于SPH-FEM耦合算法设计了一种大蒜双圆盘式切茎装置,并进行了动力学分析及参数优化。根据大蒜茎秆的结构、物理参数和力学特性参数,确定了大蒜茎秆的材料模型。利用ANSYS/LS-DYNA构建大蒜切割过程仿真模型,通过有限元仿真结果确定最优圆盘刀结构参数,圆盘刀厚度2mm、圆盘刀刃角15°和圆盘刀重叠量15mm。运用仿真模型进行单因素仿真试验,确定了大蒜切茎装置的喂入速度、圆盘刀转速、圆盘刀间距的取值范围分别为1.5~2.5km/h、400~600r/min、1~3mm;采用Box-Behnken设计三因素三水平正交组合试验方案,通过台架试验确定各因素水平下圆盘刀最大切割阻力,运用Design-Expert 13对试验结果进行方差和响应面分析,得到大蒜切茎装置实际最佳工作参数,喂入速度为2.1km/h、圆盘刀转速为560r/min、圆盘刀间距为1mm。台架试验结果表明,在最优工作参数下最大切割阻力为7.33N,误差为7.5%。本文所设计的双圆盘式切茎装置切割阻力小、工作性能稳定,茎秆切割面较为平整,并且在试验过程中无鳞茎损伤,满足大蒜收获茎秆切割要求,可为大蒜联合收获机械的设计提供参考。

    Abstract:

    Aiming to address the current issues with garlic combined harvesters’ stem-cutting devices, including suboptimal cutting performance, high cutting resistance, delayed cutting causing bulb damage, and clogging of gripping and conveying mechanisms, an SPH-FEM coupled algorithm was employed to design a dual-disc garlic stem-cutting device. Dynamic analysis and parameter optimization were subsequently conducted. Firstly, the material model for garlic stems was established based on their structural characteristics, physical parameters, and mechanical properties. A simulation model of the garlic cutting process was constructed by using ANSYS/LS-DYNA. Finite element simulation results determined the optimal blade disc parameters: disc thickness of 2mm, blade angle of 15°, and blade overlap of 15mm. Single-factor simulation tests were conducted by using the model to establish the operational ranges for the garlic cutting device: feed rate of 1.5~2.5km/h, disc rotational speed of 400~600r/min, and disc spacing of 1~3mm. Finally, a Box-Behnken design, a three-factor, three-level orthogonal combination test plan was implemented. Bench tests determined the maximum cutting resistance of the disc under each factor level. Design-Expert 13 was employed to conduct variance analysis and response surface analysis on the test results, yielding the optimal operating parameters for the garlic stem-cutting device: feed rate of 2.1km/h, disc rotational speed of 560r/min, and disc spacing of 1mm. Bench test results indicated that under optimal operating parameters, the maximum cutting resistance was 7.33N with an error margin of 7.5%. This dual-disc cutting device exhibited low cutting resistance, stable performance, and produced relatively flat stem cross-sections. Crucially, no bulb damage occurred during testing, fulfilling the stem-cutting requirements for garlic harvesting. It provided valuable reference for designing combined garlic harvesting machinery.

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李骅,高涵,王永健,於海明,傅杰一,郭靳枭.基于SPH-FEM大蒜切茎装置动力学分析及参数优化[J].农业机械学报,2026,57(4):192-202. LI Hua, GAO Han, WANG Yongjian, YU Haiming, FU Jieyi, GUO Jinxiao. Kinetic Analysis and Parameter Optimization of Garlic Stem Cutting Device Based on SPH-FEM[J]. Transactions of the Chinese Society for Agricultural Machinery,2026,57(4):192-202.

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  • 收稿日期:2024-11-01
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  • 在线发布日期: 2026-02-15
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