4.7 Article

Design of Hydrostatic Chassis Drive System for Large Plant Protection Machine

期刊

AGRICULTURE-BASEL
卷 12, 期 8, 页码 -

出版社

MDPI
DOI: 10.3390/agriculture12081118

关键词

hydraulic chassis; anti-slip; diverter valve; AMESim simulation

类别

资金

  1. Key R&D Program of Shandong Province [2019JZZY020616, 2020CXGC011001, 2020CXGC011003, 2019JZZY010453]
  2. Shandong Provincial Major Agricultural Applied Technological Innovation Projects [SD2019NJ012]

向作者/读者索取更多资源

This paper proposes a design of hydrostatic chassis drive system for a large plant protection machine in order to meet the working performance and requirements. The combination of a hydraulic drive system and shunt valve is used to realize the anti-slip rotation function and improve the driving stability. The study calculates and selects the parameters of the main hydraulic components, models and simulates the hydraulic drive system using AMESim software. The test results show that the hydraulic chassis of the plant protection machine designed in this study has good driving stability and can effectively reduce the slip rate.
In order to meet the working performance of large plant protection machine and according to the actual working requirements, this paper proposes a design of hydrostatic chassis drive system for a large plant protection machine. The purpose of this study is to realize the anti-slip rotation function of the plant protection machine and improve the driving stability through the combination of a hydraulic drive system and shunt valve. In this study, a closed circuit with a single pump and four motors is used, and a diverter valve is used to prevent the wheels from skidding during the driving of the plant protection machine. The parameters of the main hydraulic components of the hydraulic drive system were firstly calculated and selected; then the AMESim software was used to model and simulate the hydraulic drive system. Finally, a test platform with anti-skid function is designed and built, and the test results are as follows: when the diverter valve is closed, the plant protection machine drives at 3 km/h and 6 km/h respectively, and the skid rate is 3.79% and 6.17%; when the diverter valve is open, the plant protection machine drives at 3 km/h and 6 km/h respectively, and the skid rate is 1.33% and 2.70% respectively. The test results show that the hydraulic chassis of the plant protection machine designed in this study has good driving stability and can effectively reduce the slip rate of the plant protection machine in the process of driving in the field, which provides an effective theoretical support for the design of the driving system of the hydraulic chassis of the plant protection machine.

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