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适用于标准垄密植模式的高速精密玉米排种器的研制

Development of high-speed precision maize metering device for dense planting pattern with standard ridges.

作者信息

Chen Junzhi, Guan Tianyuan, Yuan Zixin, Xu Fudong, Zhao Kuangyu, Tang Han, Zhao Jiale, Wang Jinwu

机构信息

College of Engineering, Northeast Agricultural University, Harbin, China.

Quality Inspection Department, Fang Zheng Comprehensive Product Quality Inspection and Testing Center, Harbin, China.

出版信息

Front Plant Sci. 2024 Nov 11;15:1452699. doi: 10.3389/fpls.2024.1452699. eCollection 2024.

Abstract

This study proposed a high-speed precision dual-chamber maize metering device for the dense planting pattern with standard ridge promoted in China. Through theoretical analysis of the sowing process, parameters for the key components have been designed. The metering device is capable of planting two rows in a single pass for high-speed precision seeding. The effect of operating speed and negative pressure on seed metering quality was investigated. A high-speed camera was used to capture the trajectory of maize seed at different operating speeds, and it was found that intra-row shifts were caused by collisions at the mouth of the seed guide tube and rotation of the seed as it fell. Employing a two-factor, five-level orthogonal rotation test, Investigated the optimal operating parameters for the maize metering device. Response surface analysis showed that optimum seed metering quality was achieved at 14.2 km/h and 13.5 kPa. Validation tests showed a qualified rate of 97.93%, with a coefficient variation of 8.97% for this method. Additionally, an energy consumption analysis indicated a reduction in operating energy consumption of approximately 32% compared to conventional air suction seed metering devices for dense planting with large ridges on the same area of farmland. This study provides insights for reducing energy consumption in the seeding process, contributing to the sustainable development of agricultural resources.

摘要

本研究针对我国推广的标准垄密植模式,提出了一种高速精密双腔玉米排种器。通过对播种过程的理论分析,设计了关键部件的参数。该排种器能够一次播种两行,实现高速精密播种。研究了作业速度和负压对排种质量的影响。使用高速摄像机捕捉不同作业速度下玉米种子的轨迹,发现种子在行内的偏移是由种子导管口处的碰撞以及种子下落时的旋转引起的。采用二因素五水平正交旋转试验,研究了玉米排种器的最佳作业参数。响应面分析表明,在作业速度为14.2 km/h、负压为13.5 kPa时,排种质量达到最优。验证试验表明,该方法的合格率为97.93%,变异系数为8.97%。此外,能耗分析表明,在相同农田面积上,与传统的大垄密植气吸式排种器相比,作业能耗降低了约32%。本研究为降低播种过程中的能耗提供了思路,有助于农业资源的可持续发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3aeb/11586221/c609a65bba84/fpls-15-1452699-g001.jpg

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