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Article

Effect of Angle Between Center-Mounted Blades and Disc on Particle Trajectory Correction in Side-Throwing Centrifugal Spreaders

1
College of Engineering, Northeast Agricultural University, Harbin 150030, China
2
College of Mechanical and Electrical Engineering, Suqian University, Suqian 223800, China
*
Author to whom correspondence should be addressed.
Agriculture 2025, 15(13), 1392; https://doi.org/10.3390/agriculture15131392
Submission received: 22 May 2025 / Revised: 23 June 2025 / Accepted: 25 June 2025 / Published: 28 June 2025

Abstract

This study investigated the effect of the angle between the blade and the inclined disc on particle trajectory correction during ejection from an organic fertilizer side-throwing device. Using the inclined disc device as the test subject, a blade-based coordinate system was established to model the complex relative particle motion under combined disc and blade inclination. Particle dynamics and blade forces were analyzed quadrantally, enabling the development of a mechanical model and the derivation of displacement equations. Numerical simulation, virtual simulation, and experimental testing yielded the following results: Under the current device parameters, the relative velocity between particles and the blade reaches its maximum when the angle between the blade and the inclined disc is 80°. Within the angle range from 65° to 85°, as the angle increases, the scattering angle of single-sided discs monotonically decreases, while that of dual-sided discs monotonously increases. At an angle of 65°, the trajectories of the dual-sided disc flows tend to converge. At 80°, the flow is at the critical point between convergence and divergence. The effective throwing distance first increases and then decreases, reaching a maximum at an angle of 80°. This study clarifies the relationship between the angle correction of blade–disc inclination and particle velocity and trajectory on the blade, providing a reliable mathematical model and simulation method for similar studies in the field of inclined disc centrifugal material ejection.
Keywords: agricultural machinery; organic fertilizer side-throwing machine; particle trajectory; mathematical model; virtual simulation; experimental testing agricultural machinery; organic fertilizer side-throwing machine; particle trajectory; mathematical model; virtual simulation; experimental testing

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MDPI and ACS Style

Xie, Y.; Liu, H.; Shang, J.; Guo, L.; Zheng, G. Effect of Angle Between Center-Mounted Blades and Disc on Particle Trajectory Correction in Side-Throwing Centrifugal Spreaders. Agriculture 2025, 15, 1392. https://doi.org/10.3390/agriculture15131392

AMA Style

Xie Y, Liu H, Shang J, Guo L, Zheng G. Effect of Angle Between Center-Mounted Blades and Disc on Particle Trajectory Correction in Side-Throwing Centrifugal Spreaders. Agriculture. 2025; 15(13):1392. https://doi.org/10.3390/agriculture15131392

Chicago/Turabian Style

Xie, Yongtao, Hongxin Liu, Jiajie Shang, Lifeng Guo, and Guoxiang Zheng. 2025. "Effect of Angle Between Center-Mounted Blades and Disc on Particle Trajectory Correction in Side-Throwing Centrifugal Spreaders" Agriculture 15, no. 13: 1392. https://doi.org/10.3390/agriculture15131392

APA Style

Xie, Y., Liu, H., Shang, J., Guo, L., & Zheng, G. (2025). Effect of Angle Between Center-Mounted Blades and Disc on Particle Trajectory Correction in Side-Throwing Centrifugal Spreaders. Agriculture, 15(13), 1392. https://doi.org/10.3390/agriculture15131392

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