Design of the filling device for citrus seedling pot based on turnover box

Authors

  • Qinchao Xu 1. College of Engineering, Huazhong Agricultural University, Wuhan 430070, China 2. Key Laboratory of Agricultural Equipment in Mid-lower Yangtze River, Ministry of Agriculture and Rural Affairs, Wuhan 430070, China 3. Citrus Mechanization Research Base of the Ministry of Agriculture and Rural Affairs, Wuhan 430070, China
  • Haoyi Chen 1. College of Engineering, Huazhong Agricultural University, Wuhan 430070, China 2. Key Laboratory of Agricultural Equipment in Mid-lower Yangtze River, Ministry of Agriculture and Rural Affairs, Wuhan 430070, China 3. Citrus Mechanization Research Base of the Ministry of Agriculture and Rural Affairs, Wuhan 430070, China
  • Chuanxin Liu 1. College of Engineering, Huazhong Agricultural University, Wuhan 430070, China 2. Key Laboratory of Agricultural Equipment in Mid-lower Yangtze River, Ministry of Agriculture and Rural Affairs, Wuhan 430070, China 3. Citrus Mechanization Research Base of the Ministry of Agriculture and Rural Affairs, Wuhan 430070, China
  • Jiating Zhu 1. College of Engineering, Huazhong Agricultural University, Wuhan 430070, China 2. Key Laboratory of Agricultural Equipment in Mid-lower Yangtze River, Ministry of Agriculture and Rural Affairs, Wuhan 430070, China 3. Citrus Mechanization Research Base of the Ministry of Agriculture and Rural Affairs, Wuhan 430070, China
  • Shanjun Li 1. College of Engineering, Huazhong Agricultural University, Wuhan 430070, China 2. Key Laboratory of Agricultural Equipment in Mid-lower Yangtze River, Ministry of Agriculture and Rural Affairs, Wuhan 430070, China 3. Citrus Mechanization Research Base of the Ministry of Agriculture and Rural Affairs, Wuhan 430070, China
  • Meiqi Ye 1. College of Engineering, Huazhong Agricultural University, Wuhan 430070, China 2. Key Laboratory of Agricultural Equipment in Mid-lower Yangtze River, Ministry of Agriculture and Rural Affairs, Wuhan 430070, China 3. Citrus Mechanization Research Base of the Ministry of Agriculture and Rural Affairs, Wuhan 430070, China

DOI:

https://doi.org/10.25165/ijabe.v18i3.9397

Keywords:

agricultural machinery, citrus, seedling pot, turnover box, filling, EDEM

Abstract

In China, soft plastic pots are the predominant container used for the cultivation of citrus seedlings. However, due to their soft characteristics, manual operation is the primary method of pot filling and placement, which significantly impedes production efficiency. In order to resolve this issue, a solution for filling citrus seedling pots based on a turnover box was proposed. By analyzing the movement status of the turnover box unloading mechanism, the length of each component was calculated, and the specific structure of the turnover box was designed. The substrate lifting rate of the conveyor belt was analyzed and the structural parameters of the lifting mechanism were determined. Through theoretical analysis of the substrate trajectory during the dispersion process, the inlet position of the splitter mechanism was determined, and the specific structure of the splitter mechanism was designed to control the uniformity of the substrate distribution. A seedling pot filling process simulation model was constructed using discrete element software. The operating parameters of the filling device were evaluated, and the filling effect was analyzed. The test prototype was processed and three loading tests were carried out. The results show that the prototype runs stably, with a loading time of 8 s for 16 pots. The unloading mechanism of the turnover box is reliable, and the seedling pots are neatly arranged after unloading. The maximum weight among the 16 pots in the turnover box is 2.00 kg, while the minimum weight is 1.88 kg. The mean weight is 1.94 kg, with a coefficient of variation of 2.47%. The excess substrate mass scraped on the turnover box is 0.83 kg, accounting for 2.67% of the total mass of the 16 pots. The prototype design is reasonable, with good filling uniformity and high efficiency. The research results can provide reference for the development and optimization of citrus seedling pot filling and transportation equipment in the future. Keywords: agricultural machinery, citrus, seedling pot, turnover box, filling, EDEM DOI: 10.25165/j.ijabe.20251803.9397 Citation: Xu Q C, Chen H Y, Liu C X, Zhu J T, Li S J, Ye M Q. Design of the filling device for citrus seedling pot based on turnover box. Int J Agric & Biol Eng, 2025; 18(3): 97–104.

References

Li R H, Xie Y M, Long G Y, Hu W, Deng Z N. Investigation on current situation of the application of citrus seedling-raising. Hunan Agricultural Sciences, 2013; 19: 88-92. (in Chinese)

Deng H P, Yang G J, Wang Z C, Geng G. Research status on cultivating techniques of big container seedlings. World Forestry Research, 2011; 24(2): 6. (in Chinese)

A K Hamzayev, B I Eshankulov, M Z Kholmurotov, M M Inomova. Study on cultivation of pistachio (Pistacia vera L.) seedlings in containers. IOP Conference Series: Earth and Environmental Science, 2020; 614(1): 119-120.

Liu H J, Liu J F, Hao J J, Li J P. Biomass seeding bowl and molding equipment. Transactions of the CSAM, 2012; 43(2): 52-54, 74. (in Chinese)

Hao J K, Zhang X Q, Qi X, Fan G C, Liu Z, Peng F Z. Current status and development strategies of factory-based seedling production technology. Jiangsu Agricultural Sciences, 2012; 40(1): 349-351. (in Chinese)

Zheng J F, He D X, Ji F. Process design and yield simulation for the industrial propagation of strawberry basic transplants. Transactions of the CSAE, 2022; 38(S1): 226-231. (in Chinese)

Jin X, Tang L M, Ji J T, Wang C L, Wan S S. Potential analysis of an automatic transplanting method for healthy potted seedlings using computer vision. Int J Agric & Biol Eng, 2021; 14(6): 162-168.

Tang H, Jiang Y M, Xu C S, Zhou W Q, Wang Q, Wang Y J. Experimental study on the correlation between hill direct seeding rate and field seedling rate of typical rice varieties in cold areas. Int J Agric & Biol Eng, 2021; 14(5): 63-71.

Xue X L, Li L H, Xu C L, Li E Q, Wang Y J. Optimized design and experiment of a fully automated potted cotton seedling transplanting mechanism. Int J Agric & Biol Eng, 2020; 13(4): 111-117.

Xu Q C, Li S J, Zhang Y, Meng L, Lu H, Xie L. Design and test of seedling pot filling and transporting machine for citrus. Transactions of the CSAE, 2020; 36(18): 66-72. (in Chinese)

Xu Q C, Li S J, Zhang J, Zhu J T, Pan H B. Design and test of self-propelled citrus seedling pots filling and placing machine. Int J Agric & Biol Eng, 2023; 16(1): 104-110. DOI: 10.25165/ j.ijabe.20231601.7817

He L, Jiang J, Li J C, Zhang F K, Yi S L, Zheng Y Q, et al. Design and test of seedling pot filling and hole punching processing line for citrus. Journal of Southwest University (Natural Science Edition), 2023; 45(5): 108-121. (in Chinese)

Chuang A, Kadyampakeni D, Liesenfelt T, Vincent C, Dewdney M, Diepenbrock L. Comparison of tools to support healthy young citrus plantings in a region with endemic huanglongbing, CLas, and Asian Citrus Psyllid (Diaphorina citri). Crop Protection, 2024; 185: 160871.

Van Henten E J. Greenhouse mechanization: state of the art and future perspective. Acta Horticulture, 2006; 710: 55-70.

Pangestuti, R E P Prahardini, R Rosliani, M Rahayu, O Tandry, Saidah, et al. Seedling production management of Shallots from seeds based on local wisdom technology. IOP Conference Series: Earth and Environmental Science, 2023; 1230: 012213.

Gu S, Yang Y L, Zhang Y F, Qiao X J. Development status of automated equipment systems for greenhouse vegetable seedlings production in Netherlands and its inspiration for China. Transactions of the CSAE, 2013; 29(14): 185-194. (in Chinese)

Gu S, Yang Y L, Zhang Y F. Development status of automated equipment systems for greenhouse potted flowers production in Netherlands. Transactions of the CSAE, 2012; 28(19): 1-8. (in Chinese)

Qi F, Li K, Li S, He F, Zhou X Q. Development of intelligent equipment for protected horticulture in world and enlightenment to China. Transactions of the CSAE, 2019; 35(2): 183-195. (in Chinese) DOI: CNKI:SUN:NYGU.0.2019-02-024

Pan H, Xu Q, Bao X, Zhou R, Zhang J, Shan C, et al. design and test of automatic feeding device for substrate filling. Applied Sciences. 2024; 14(10): 4206. DOI: 10.3390/app14104206

Paradkar V, Raheman H, Rahul K. Development of a metering mechanism with serial robotic arm for handling paper pot seedlings in a vegetable transplanter. Artificial Intelligence in Agriculture. 2021; 5: 52-63. DOI:10.1016/j.aiia.2021.02.001

Khadatkar A, Magar A P, Sawant C P, Modi R U. Development and testing of automatic seedling extractor in robotic transplanter using mechatronics for nursery seedlings. Discover Applied Sciences. 2024; 6: 51. DOI: 10.1007/s42452-024-05670-2

Hwang S-J, Nam J-S. Optimization of roller shape for roller-type onion pot-seeding machine. Int J Agric & Biol Eng, 2020; 13(1): 111-119.

Guo S R. Research progress, current exploitations and developing trends of solid cultivation medium. Transactions of the CSAE, 2005; 21(S): 1-4. (in Chinese)

Dong J X, Su J D, Wang G, Wu F R, Wang C D. Status quo of tobacco seedling technology in China. Chinese Journal of Tobacco, 2015; 21(1): 119-124. (in Chinese) DOI: 10.16472/j.chinatobacco. 2014. 022

Zhou J, Hao F G, Li B Y. Researching advance of industrial-breeding substrate. Guangdong Agricultural Science, 2012; 39(4): 224-226. (in Chinese)

Yang W Z, Yang B, Wang W B. Key technologies for industrialized seedling raising. World Forestry Research, 2009; 22(1): 28-33. (in Chinese) DOI: CNKI:SUN:SJLY.0.2009-01-005

Yang Y D, Wu J G, Chen H Y, Gu L, Zhu X F. Development prospects and promotion strategies for vegetable seedling production in plug trays in southern Jiangsu Province. Jiangsu Agricultural Sciences, 2009; 3: 218-219. (in Chinese)

Lin Q Q, Huang Y X, Zhang Y H, Rao F, Yu W J. Measurement of surface roughness of Salix psammophila scrimber using stylus profilometer and extended depth-of-field 3D microscope. Journal of Forestry Engineering, 2021; 6(2): 40-48. (in Chinese)

Li H Z, Tang X F, Lin Y, Xu F F, Zhang X, Ye H Q, et al. Discrete element simulation study of mixing process of Guizhi Fuling Capsules: Parameter calibration. Chinese Journal of Traditional Chinese Medicine, 2023; 48(15): 4007-4014. (in Chinese)

Luo S, Yuan Q X, Shaban G, Yang L Y. Parameters calibration of vermicomposting nursery substrate with discrete element method based on JKR contact model. Transactions of the CSAE, 2018; 49(4): 343-350. (in Chinese)

Wang X Q, Yu G H, Liu N H, Tong J H, Wang Q Y. Calibration of discrete element simulation parameters for greenhouse inferior seedling substrate. Transactions of the CSAE, 2023; 54(12): 359-366. (in Chinese)

Cui Z C, Guan C S, Xu T, Li J C, Chen Y Y, Song J L, et al. Design and experiment of the automatic conveying and separating device for substrate block seedling transplanting machine. Transactions of the CSAE, 2023; 39(13): 68-79. (in Chinese)

Downloads

Published

2025-06-30

How to Cite

Xu, Q., Chen, H., Liu, C., Zhu, J., Li, S., & Ye, M. (2025). Design of the filling device for citrus seedling pot based on turnover box. International Journal of Agricultural and Biological Engineering, 18(3), 97–104. https://doi.org/10.25165/ijabe.v18i3.9397

Issue

Section

Power and Machinery Systems