Biomechanical properties of ready-to-harvest rapeseed plants: Measurement and analysis

A large loss occurs in the combine harvesting of rapeseeds due to the fragility of rapeseed pods, and all the more so with the vibration of the combine header and the collision between the header and plants. Seed loss is greatly affected by the biomechanical properties of ready-to-harvest rapeseed p...

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Main Authors: Guangchao Zhan, Wangyuan Zong, Lina Ma, Junyi Wei, Wei Liu
Format: Article
Language:English
Published: Elsevier 2023-09-01
Series:Information Processing in Agriculture
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2214317322000427
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author Guangchao Zhan
Wangyuan Zong
Lina Ma
Junyi Wei
Wei Liu
author_facet Guangchao Zhan
Wangyuan Zong
Lina Ma
Junyi Wei
Wei Liu
author_sort Guangchao Zhan
collection DOAJ
description A large loss occurs in the combine harvesting of rapeseeds due to the fragility of rapeseed pods, and all the more so with the vibration of the combine header and the collision between the header and plants. Seed loss is greatly affected by the biomechanical properties of ready-to-harvest rapeseed plants. To understand the mechanism of pod cracking and seed loss and to propose measures for alleviating them, it is needed to study the biomechanical properties of ready-to-harvest rapeseed plants. To this end, “Huayouza 62”, a widely planted rapeseed variety in central China, was selected to study the biomechanical properties, including pod-cracking resistance, main stem-shearing resistance and resonant frequencies, of whole plants. The results showed that the distribution of pod-cracking resistance forces was 1.333–6.100 N in the mature stage, and the pod width and thickness had a significant influence on the cracking resistance. The main influencing factor of the main stem-shearing resistance was the stem diameter. A thicker main stem resulted in a larger shearing resistance force but a smaller shear stress. The moisture contents of the main stems varied from 47.71% to 76.13%. However, the varying moisture contents did not show a significant impact on the shearing resistance. The resonant frequencies of whole rapeseed plants ready for harvest ranged from 6.5 Hz to 7.5 Hz, which was close to the excitation frequency of the cutter bar on the 4LL-1.5Y harvester. This study lays a foundation for improving the design and construction of harvesting devices for rapeseed plants to reduce seed loss.
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spelling doaj.art-4040a5a0d6b840f39632c2a57fd27b722023-09-22T04:38:47ZengElsevierInformation Processing in Agriculture2214-31732023-09-01103391399Biomechanical properties of ready-to-harvest rapeseed plants: Measurement and analysisGuangchao Zhan0Wangyuan Zong1Lina Ma2Junyi Wei3Wei Liu4College of Engineering, Huazhong Agricultural University, Wuhan 430070, PR ChinaCollege of Engineering, Huazhong Agricultural University, Wuhan 430070, PR China; Key Laboratory of Agricultural Equipment in Middle-lower Reaches of the Yangtze River, Ministry of Agriculture and Rural Affairs, Wuhan 430070, PR ChinaCollege of Engineering, Huazhong Agricultural University, Wuhan 430070, PR China; Key Laboratory of Agricultural Equipment in Middle-lower Reaches of the Yangtze River, Ministry of Agriculture and Rural Affairs, Wuhan 430070, PR China; Corresponding author at: College of Engineering, Huazhong Agricultural University, Wuhan 430070, PR China.College of Engineering, Huazhong Agricultural University, Wuhan 430070, PR ChinaCollege of Engineering, Huazhong Agricultural University, Wuhan 430070, PR ChinaA large loss occurs in the combine harvesting of rapeseeds due to the fragility of rapeseed pods, and all the more so with the vibration of the combine header and the collision between the header and plants. Seed loss is greatly affected by the biomechanical properties of ready-to-harvest rapeseed plants. To understand the mechanism of pod cracking and seed loss and to propose measures for alleviating them, it is needed to study the biomechanical properties of ready-to-harvest rapeseed plants. To this end, “Huayouza 62”, a widely planted rapeseed variety in central China, was selected to study the biomechanical properties, including pod-cracking resistance, main stem-shearing resistance and resonant frequencies, of whole plants. The results showed that the distribution of pod-cracking resistance forces was 1.333–6.100 N in the mature stage, and the pod width and thickness had a significant influence on the cracking resistance. The main influencing factor of the main stem-shearing resistance was the stem diameter. A thicker main stem resulted in a larger shearing resistance force but a smaller shear stress. The moisture contents of the main stems varied from 47.71% to 76.13%. However, the varying moisture contents did not show a significant impact on the shearing resistance. The resonant frequencies of whole rapeseed plants ready for harvest ranged from 6.5 Hz to 7.5 Hz, which was close to the excitation frequency of the cutter bar on the 4LL-1.5Y harvester. This study lays a foundation for improving the design and construction of harvesting devices for rapeseed plants to reduce seed loss.http://www.sciencedirect.com/science/article/pii/S2214317322000427Rapeseed podCracking resistanceShearing resistanceResonant frequencyRapeseed harvesting
spellingShingle Guangchao Zhan
Wangyuan Zong
Lina Ma
Junyi Wei
Wei Liu
Biomechanical properties of ready-to-harvest rapeseed plants: Measurement and analysis
Information Processing in Agriculture
Rapeseed pod
Cracking resistance
Shearing resistance
Resonant frequency
Rapeseed harvesting
title Biomechanical properties of ready-to-harvest rapeseed plants: Measurement and analysis
title_full Biomechanical properties of ready-to-harvest rapeseed plants: Measurement and analysis
title_fullStr Biomechanical properties of ready-to-harvest rapeseed plants: Measurement and analysis
title_full_unstemmed Biomechanical properties of ready-to-harvest rapeseed plants: Measurement and analysis
title_short Biomechanical properties of ready-to-harvest rapeseed plants: Measurement and analysis
title_sort biomechanical properties of ready to harvest rapeseed plants measurement and analysis
topic Rapeseed pod
Cracking resistance
Shearing resistance
Resonant frequency
Rapeseed harvesting
url http://www.sciencedirect.com/science/article/pii/S2214317322000427
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AT linama biomechanicalpropertiesofreadytoharvestrapeseedplantsmeasurementandanalysis
AT junyiwei biomechanicalpropertiesofreadytoharvestrapeseedplantsmeasurementandanalysis
AT weiliu biomechanicalpropertiesofreadytoharvestrapeseedplantsmeasurementandanalysis