[1] 加快建立现代饲草产业体系推动饲草产业高质量发展——农业农村部畜牧兽医局负责人就《“十四五”全国饲草产业发展规划》答记者问[J]. 北方牧业, 2022(6): 14-15.
[2] 农业农村部关于印发《“十四五”全国饲草产业发展规划》的通知[J]. 中华人民共和国农业农村部公报, 2022(3): 46-52.
[3] 加快建立现代饲草产业体系,推动饲草产业高质量发展[J].湖南农业, 2022(6): 5-6.
[4] 加快建立现代饲草产业体系推动饲草产业高质量发展——农业农村部畜牧兽医局负责人就《“十四五”全国饲草产业发展规划》答记者问[J]. 北方牧业, 2022(6): 14-15.
[5] 宋月鹏, 王伟, 李法德, 等. 稀土催渗碳氮硼共渗自磨刃割刀组织与性能研究[J]. 表面技术, 2021, 50(1): 340-346.
Song Yuepeng, Wang Wei, Li Fade, et al. Microstructure and properties of selfsharpening blades via carbonnitronboronized with rare elements catalysis [J]. Surface Technology, 2021, 50(1): 340-346.
[6] 校林. 推动饲草(料)收获机械产业升级——全国饲草(料)收获机械发展论坛暨发展论坛暨鉴定检测技术培训班举办[J]. 农机质量与监督, 2017(6): 17-19.
[7] 陈玉华, 田富洋, 闫银发, 等. 国内外牧草收获机械发展现状及其趋势[J]. 中国农机化学报, 2018, 39(3): 1-5.
Chen Yuhua, Tian Fuyang, Yan Yinfa, et al. Development situation and trend of foragemowing machinery at home and abroad [J]. Journal of Chinese Agricultural Mechanization, 2018, 39(3): 1-5.
[8] Moise V. Study regarding the operating speed of forage harvesting machinery in order to optimize the working capacity and fuel consume [J]. Lucrari Stiintifice Zootehnie Si Biotehnologii, 2013, 40(2): 626-631.
[9] Borotov A. Cutting length the fodders of green stalks by drum chopper [C]. IOP Conference Series: Materials Science and Engineering. IOP Publishing, 2020, 883(1): 012160.
[10] Lavrov A, Moskovskiy M, Boiko A, et al. Trends in the development of technical level of the specialized flax harvestingmachinery [C]. MATEC Web of Conferences. EDP Sciences, 2020, 329: 05006.
[11] 李小龙, 张克平, 苏占科, 等. 前驱苜蓿刈割压扁机切割装置设计与分析[J]. 农业装备与车辆工程, 2023, 61(2): 25-29, 48.
Li Xiaolong, Zhang Keping, Su Zhanke, et al. Design and analysis of cutting device of frontdrive alfalfa cutting and flattening machine [J]. Agricultural Equipment & Vehicle Engineering, 2023, 61(2): 25-29, 48.
[12] 王德成, 贺长彬, 武红剑, 等. 苜蓿生产全程机械化技术研究现状与发展分析[J]. 农业机械学报, 2017, 48(8): 1-25.
Wang Decheng, He Changbin, Wu Hongjian, et al. Review of alfalfa fullmechanized production technology [J]. Transactions of the Chinese Society for Agricultural Machinery, 2017, 48(8): 1-25.
[13] 宋月鹏, 高雪, 高东升, 等. 国内外农机自磨刃割刀的制备及其研究进展[J]. 热加工工艺, 2018, 47(2): 45-49.
Song Yuepeng, Gao Xue, Gao Dongsheng, et al. Preparation and research progress of selfsharpening cutter for agricultural machinery in China and abroad [J]. Hot Working Technology, 2018, 47(2): 45-49.
[14] 吴昆, 宋月鹏. 农作物茎秆切割理论与方法研究进展分析[J]. 农业机械学报, 2022, 53(6): 1-20.
Wu Kun, Song Yuepeng. Research progress analysis of crop stalk cutting theory and method [J]. Transactions of the Chinese Society for Agricultural Machinery, 2022, 53(6): 1-20.
[15] 黄建洪, 刘东雨, 李凌云, 等. 农机零件的磨损、选材及热处理[M]. 北京: 机械工业出版社, 2013.
[16] Gan H, Mathanker S, Momin M A, et al. Effects of three cutting blade designs on energy consumption during mowingconditioning of Miscanthus giganteus [J]. Biomass and Bioenergy, 2018, 109(4): 166-171.
[17] 宋月鹏, 吴昆, 王伟, 等. 真空复合轧制自磨锐割刀与其结合界面组织性能研究[J]. 农业机械学报, 2020, 51(S2): 586-592.
Song Yuepeng, Wu Kun, Wang Wei, et al. Fabrication of selfsharpening blades via vacuumrolling composite technology and its interfacial material microstructure and properties [J]. Transactions of the Chinese Society for Agricultural Machinery, 2020, 51(S2): 586-592.
[18] Niranatlumpong P, Sukhonket C, Nakngoenthong J. Wear resistant surface treatment of pulverizer blades [J].Wear, 2013, 302(1-2): 878-881.
[19] 贾连辉, 尚勇, 龙伟民, 等. TBM滚刀刀圈材料合金成分对组织和耐磨性能的影响[J]. 中南大学学报(自然科学版), 2020, 51(10): 2730-2738.
Jia Lianhui, Shang Yong, Long Weimin, et al. Effect of alloy composition of materials for TBM cutter rings on microstructure and wear resistance [J]. Journal of Central South University: Science and Technology, 2020, 51(10): 2730-2738.
[20] 宋月鹏, 王征, 王伟, 等. 超重力熔铸铁基金属陶瓷材料多相运动学特征及其致密化机制[J]. 稀有金属材料与工程, 2020, 49(7): 2352-2357.
Song Yuepeng, Wang Zheng, Wang Wei, et al. Multiphase kinematics characteristics and densification mechanism of ironbased metalloceramics functionally gradient materials via combustion synthesis infiltration under a ultragravity field [J]. Rare Metal Materials and Engineering, 2020, 49(7): 2352-2357.
[21] Liu X F, Tian Z L, Zhang X F, et al. “Selfsharpening” tungsten highentropy alloy [J]. Acta Materialia, 2020, 186: 257-266.
[22] 宋月鹏, 高雪, 李法德, 等. 超重力熔铸梯度材料制备饲草料收获机械自磨锐切刀[J]. 中国科学: 技术科学, 2018, 48(1): 94-100.Song Yuepeng, Gao Xue, Li Fade, et al. Study on selfsharpening cutters for forage harvesting machine with functionally gradient material prepared by combustion synthesis meltcasting under ultragravity field [J]. Scientia Sinica (Technologica), 2018, 48(1): 94-100.
[23] 宋月鹏, 王征, 吴昆, 等. 金属陶瓷自磨刃割刀对苜蓿低损伤切割机理分析[J]. 农业机械学报, 2020, 51(10): 421-426, 309.
Song Yuepeng, Wang Zheng, Wu Kun, et al. Fabrication of selfsharpening blades with metalloceramics materials and lowdamaged cutting mechanism of alfalfa [J]. Transactions of the Chinese Society for Agricultural Machinery, 2020, 51(10): 421-426, 309.
[24] 许令峰, 田冲, 刘腾, 等. 激光熔覆Ni基WC复合材料制备自磨刃割刀[J]. 农业工程, 2020, 10(4): 72-78.
[25] 孟亮, 李雄, 黄永俊, 等. 激光淬火及熔覆技术提高柑橘枝粉碎机65Mn钢锤片耐磨性[J]. 农业工程学报, 2018, 34(17): 54-60.
Meng Liang, Li Xiong, Huang Yongjun, et al. Improvement on wear resistance of citrus twig grinding hammer of 65Mn steel by laser quenching and laser cladding [J]. Transactions of the Chinese Society of Agricultural Engineering, 2018, 34(17): 54-60.
[26] 孙伟, 邓建新, 孟莹, 等. 氮化物涂层对65Mn钢割灌机刀片摩擦磨损性能的影响[J]. 工具技术, 2021, 55(5): 13-18.Sun Wei, Deng Jianxin, Meng Ying, et al. Effect of nitride coating on friction and wear behavior of 65Mn steel blade of brush cutter [J]. Tool Engineering, 2021, 55(5): 13-18.
[27] Matin M A, Desbiolles J M A, Fielke J M. Striptillage using rotating straight blades: Effect of cutting edge geometry on furrow parameters [J]. Soil and Tillage Research, 2016, 155: 271-279.
[28] 张燕青, 崔清亮, 郭玉明, 等. 谷子茎秆切割力学特性试验与分析[J]. 农业机械学报, 2019, 50(4): 146-155, 162.
Zhang Yanqing, Cui Qingliang, Guo Yuming, et al. Experiment and analysis of cutting mechanical properties of millet stem [J]. Transactions of the Chinese Society for Agricultural Machinery, 2019, 50(4): 146-155, 162.
[29] 刘羊, 黄小毛, 马丽娜, 等. 拨禾链式油葵割台静态滑切角恒定切割器设计与试验[J]. 农业机械学报, 2021, 52(1): 99-108.
Liu Yang, Huang Xiaomao, Ma Lina, et al. Design and test of static sliding cut angle constant cutting machine for chain oil sunflower harvester header [J]. Transactions of the Chinese Society for Agricultural Machinery, 2021, 52(1): 99-108.
[30] Liu Q, Mathanker S K, Zhang Q, et al. Biomechanical properties of miscanthus stems [J]. Transactions of the Asabe, 2012, 55(4):1125-1131.
[31] Hou J, Bai J, Yao E, et al. Design and parameter optimization of disc type cutting device for castor stem [J]. IEEE Access, 2020, 8: 191152-191162.
[32] Huang J, Liu W, Zhou F, et al. Mechanical properties of maize fibre bundles and their contribution to lodging resistance [J]. Biosystems Engineering, 2016, 151: 298-307.
[33] Jia H, Li C, Zhang Z, et al. Design of bionic saw blade for corn stalk cutting [J]. Journal of Bionic Engineering, 2013, 10(4): 497-505.
[34] 张涵. 苜蓿茎秆剪切特性及切割参数的试验研究[D]. 北京: 中国农业大学, 2015.
[35] Greiner C, Schfer M. Bioinspired scalelike surface textures and their tribological properties [J]. Bioinspiration & Biomimetics, 2015, 10(4): 044001.
[36] 张黎骅, 罗惠中, 周杨, 等. 青贮玉米切叶蚁上颚仿生粉碎刀片设计与试验[J]. 农业工程学报, 2022, 38(12): 48-56.
Zhang Lihua, Luo Huizhong, Zhou Yang, et al. Design and test of bionic crushing blade based on the mandible of the leafcutter ant for harvesting silage maize [J]. Transactions of the Chinese Society of Agricultural Engineering, 2022, 38(12): 48-56.
[37] Xie L, Wang J, Cheng S, et al. Cutting characteristics of sugarcane in terms of physical and chemical properties [J]. Transactions of the ASABE, 2020, 63(4): 1007-1017.
[38] Guo L, Wang D, Tabil L G, et al. Compression and relaxation properties of selected biomass forbriquetting [J]. Biosystems Engineering, 2016, 148: 101-110.
[39] 赵研科, 郭庆新, 张鸿涛, 等. 圆盘式割草机割刀运动轨迹分析[J]. 拖拉机与农用运输车, 2020, 47(5): 43-45, 49.
[40] Stubbs C J, Larson R, Cook D D. Mapping spatially distributed material properties in finite element models of plant tissue using computed tomography [J]. Biosystems Engineering, 2020, 200: 391-399.
[41] Vu V D, Ngo Q H, Nguyen T T, et al. Multiobjective optimisation of cutting force and cutting power in chopping agricultural residues [J]. Biosystems Engineering, 2020, 191: 107-115.
[42] Zhang S, Yang S S, Wang J W, et al. Integrating a novel irrigation approximation method with a processbased remote sensing model to estimate multiyears winter wheat yield over the North China Plain [J]. Journal of Integrative Agriculture, 2023, 22(9): 2865-2881.
[43] 房骏, 尚力, 王庆莹. 我国牧草收获机械的发展现状及存在问题[J]. 中国畜牧兽医文摘, 2006(2): 67.
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