Wang Ying, Li Dong, Nie Cheng, Gong Pan, Yang Junsheng, Hu Zhigang, Li Bin, Ma Ming
School of Mechanical Engineering, Wuhan Polytechnic University, Wuhan 430023, China.
State Key Laboratory of Materials Processing and Die & Mould Technology, School of Materials Science and Engineering, Huazhong University of Science and Technology, 1037 Luoyu Road, Wuhan 430074, China.
Materials (Basel). 2023 Dec 14;16(24):7646. doi: 10.3390/ma16247646.
Agricultural mechanization is crucial in enhancing production efficiency, alleviating labor demands, reducing costs, improving agricultural product quality, and promoting sustainable development. However, wear and tear are inevitable when using agricultural machinery. The failure of critical wear-resistant parts is responsible for over 50% of rural machinery breakdowns. For instance, a domestic combine harvester typically only operates trouble-free for 20 to 30 h, and the service life of a rotary plow knife is approximately 80 h. Investigating the wear performance of key farm machinery components reinforces machinery design and maintenance strategies, extends machinery lifespans, enhances agricultural production efficiency, and advances agrarian sustainability. This paper provides a comprehensive overview of the latest research on the wear resistance of crucial agricultural machinery components. It delves into the factors influencing the wear resistance of these components and explores current effective measures to address wear-related issues. Additionally, it also summarizes the challenges and opportunities in researching the wear performance of key components in agricultural machinery and future development directions.
农业机械化对于提高生产效率、减轻劳动力需求、降低成本、提升农产品质量以及促进可持续发展至关重要。然而,使用农业机械时磨损是不可避免的。关键耐磨部件的故障导致农村机械故障的比例超过50%。例如,一台国产联合收割机通常仅能无故障运行20至30小时,而旋耕刀的使用寿命约为80小时。研究关键农业机械部件的磨损性能可加强机械设计和维护策略,延长机械使用寿命,提高农业生产效率,并推动农业可持续发展。本文全面概述了关键农业机械部件耐磨性的最新研究。它深入探讨了影响这些部件耐磨性的因素,并探索了当前解决磨损相关问题的有效措施。此外,它还总结了研究农业机械关键部件磨损性能的挑战与机遇以及未来的发展方向。