Impact of Structural Parameters on the Collision Characteristics and Coefficient of Restitution of Soybean Particles on Harvester’s Cleaning Screens

Inadequate parameter design of the cleaning device in soybean combine harvesters leads to elevated levels of machine harvesting losses and impurity rates. To provide fundamental data for the optimization of structural parameters of soybean cleaning sieves, it is of great significance to study the co...

Full description

Bibliographic Details
Published in:Agriculture
Main Authors: Xiaohu Guo, Shiguo Wang, Shuren Chen, Bin Li, Zhong Tang, Yifan Hu
Format: Article
Language:English
Published: MDPI AG 2024-07-01
Subjects:
Online Access:https://www.mdpi.com/2077-0472/14/7/1201
_version_ 1850334742372679680
author Xiaohu Guo
Shiguo Wang
Shuren Chen
Bin Li
Zhong Tang
Yifan Hu
author_facet Xiaohu Guo
Shiguo Wang
Shuren Chen
Bin Li
Zhong Tang
Yifan Hu
author_sort Xiaohu Guo
collection DOAJ
container_title Agriculture
description Inadequate parameter design of the cleaning device in soybean combine harvesters leads to elevated levels of machine harvesting losses and impurity rates. To provide fundamental data for the optimization of structural parameters of soybean cleaning sieves, it is of great significance to study the collision and bouncing characteristics of soybeans on the cleaning sieve surface and the impact of parameters on the coefficient of restitution (COR). The current study designed a collision platform, using soybeans at the harvest stage as the research subject. The experimental factors included drop height, wall inclination angle, wall movement speed, and wall material. Through single-factor experiments and orthogonal experiments, the effects of different collision parameters on the rebound trajectory and COR of soybeans were investigated. This study focuses on soybeans at the harvest stage as the test subjects. Experiments were conducted on a collision platform and recorded with a high-speed camera to capture the three-dimensional motion trajectories of the soybeans using the principle of specular reflection. Through single-factor experiments, the jumping characteristics of the soybeans on sieve surfaces with different motion characteristics were analyzed. The impact of drop height (400–650 mm), wall inclination angle (8–13°), wall movement speed (0.6–1.1 m/s), and wall material (stainless steel plates and polyurethane plates) on the coefficient of restitution (COR) was calculated and clarified. Multi-factor orthogonal experiments were conducted to determine the significance order of the different factors affecting the COR. Three-dimensional models of the soybeans and the collision platform were constructed using SolidWorks software, and the collision between the soybeans and the cleaning wall was simulated using EDEM software. The micro-forces and energy transfer during the soybean collision were analyzed. The results indicated that the COR of soybeans decreases as the drop height increases, but increases with wall inclination angle and wall movement speed. Additionally, the COR is higher when the soybeans collide with stainless steel plates compared to polyurethane plates. The order of influence of the four factors on the COR were: wall material > wall inclination angle > wall speed > drop height. This study provides important reference value for the efficient and low-loss design of cleaning devices.
format Article
id doaj-art-c2efa39bb87146beab890eae33ca8906
institution Directory of Open Access Journals
issn 2077-0472
language English
publishDate 2024-07-01
publisher MDPI AG
record_format Article
spelling doaj-art-c2efa39bb87146beab890eae33ca89062025-08-19T23:16:44ZengMDPI AGAgriculture2077-04722024-07-01147120110.3390/agriculture14071201Impact of Structural Parameters on the Collision Characteristics and Coefficient of Restitution of Soybean Particles on Harvester’s Cleaning ScreensXiaohu Guo0Shiguo Wang1Shuren Chen2Bin Li3Zhong Tang4Yifan Hu5School of Agricultural Engineering, Jiangsu University, Zhenjiang 212013, ChinaKey Laboratory Equipment of Modern Agricultural Equipment and Technology, Ministry of Education, Jiangsu University, Zhenjiang 212013, ChinaSchool of Agricultural Engineering, Jiangsu University, Zhenjiang 212013, ChinaXinjiang Academy of Agricultural and Reclamation Science, Shihezi 832000, ChinaSchool of Agricultural Engineering, Jiangsu University, Zhenjiang 212013, ChinaSchool of Agricultural Engineering, Jiangsu University, Zhenjiang 212013, ChinaInadequate parameter design of the cleaning device in soybean combine harvesters leads to elevated levels of machine harvesting losses and impurity rates. To provide fundamental data for the optimization of structural parameters of soybean cleaning sieves, it is of great significance to study the collision and bouncing characteristics of soybeans on the cleaning sieve surface and the impact of parameters on the coefficient of restitution (COR). The current study designed a collision platform, using soybeans at the harvest stage as the research subject. The experimental factors included drop height, wall inclination angle, wall movement speed, and wall material. Through single-factor experiments and orthogonal experiments, the effects of different collision parameters on the rebound trajectory and COR of soybeans were investigated. This study focuses on soybeans at the harvest stage as the test subjects. Experiments were conducted on a collision platform and recorded with a high-speed camera to capture the three-dimensional motion trajectories of the soybeans using the principle of specular reflection. Through single-factor experiments, the jumping characteristics of the soybeans on sieve surfaces with different motion characteristics were analyzed. The impact of drop height (400–650 mm), wall inclination angle (8–13°), wall movement speed (0.6–1.1 m/s), and wall material (stainless steel plates and polyurethane plates) on the coefficient of restitution (COR) was calculated and clarified. Multi-factor orthogonal experiments were conducted to determine the significance order of the different factors affecting the COR. Three-dimensional models of the soybeans and the collision platform were constructed using SolidWorks software, and the collision between the soybeans and the cleaning wall was simulated using EDEM software. The micro-forces and energy transfer during the soybean collision were analyzed. The results indicated that the COR of soybeans decreases as the drop height increases, but increases with wall inclination angle and wall movement speed. Additionally, the COR is higher when the soybeans collide with stainless steel plates compared to polyurethane plates. The order of influence of the four factors on the COR were: wall material > wall inclination angle > wall speed > drop height. This study provides important reference value for the efficient and low-loss design of cleaning devices.https://www.mdpi.com/2077-0472/14/7/1201soybeancoefficient of restitution (COR)particle–wall collisioncollision experimentcleaning device
spellingShingle Xiaohu Guo
Shiguo Wang
Shuren Chen
Bin Li
Zhong Tang
Yifan Hu
Impact of Structural Parameters on the Collision Characteristics and Coefficient of Restitution of Soybean Particles on Harvester’s Cleaning Screens
soybean
coefficient of restitution (COR)
particle–wall collision
collision experiment
cleaning device
title Impact of Structural Parameters on the Collision Characteristics and Coefficient of Restitution of Soybean Particles on Harvester’s Cleaning Screens
title_full Impact of Structural Parameters on the Collision Characteristics and Coefficient of Restitution of Soybean Particles on Harvester’s Cleaning Screens
title_fullStr Impact of Structural Parameters on the Collision Characteristics and Coefficient of Restitution of Soybean Particles on Harvester’s Cleaning Screens
title_full_unstemmed Impact of Structural Parameters on the Collision Characteristics and Coefficient of Restitution of Soybean Particles on Harvester’s Cleaning Screens
title_short Impact of Structural Parameters on the Collision Characteristics and Coefficient of Restitution of Soybean Particles on Harvester’s Cleaning Screens
title_sort impact of structural parameters on the collision characteristics and coefficient of restitution of soybean particles on harvester s cleaning screens
topic soybean
coefficient of restitution (COR)
particle–wall collision
collision experiment
cleaning device
url https://www.mdpi.com/2077-0472/14/7/1201
work_keys_str_mv AT xiaohuguo impactofstructuralparametersonthecollisioncharacteristicsandcoefficientofrestitutionofsoybeanparticlesonharvesterscleaningscreens
AT shiguowang impactofstructuralparametersonthecollisioncharacteristicsandcoefficientofrestitutionofsoybeanparticlesonharvesterscleaningscreens
AT shurenchen impactofstructuralparametersonthecollisioncharacteristicsandcoefficientofrestitutionofsoybeanparticlesonharvesterscleaningscreens
AT binli impactofstructuralparametersonthecollisioncharacteristicsandcoefficientofrestitutionofsoybeanparticlesonharvesterscleaningscreens
AT zhongtang impactofstructuralparametersonthecollisioncharacteristicsandcoefficientofrestitutionofsoybeanparticlesonharvesterscleaningscreens
AT yifanhu impactofstructuralparametersonthecollisioncharacteristicsandcoefficientofrestitutionofsoybeanparticlesonharvesterscleaningscreens