Analysis and Experiment on the Impact of Various Hook Angle Factors on Spindle Picking Performance
Abstract
:1. Introduction
- The present study starts from the angle parameters of spindle hook teeth. To this end, an appropriate mechanical model for a single-spindle picking process is established based on the working principle of the picking mechanism.
- The new model is mainly developed to analyze the impact of spindle hook teeth on picking performance. The structural characteristics of the spindle and fabrication of various hook tooth angle-picking spindles through 3D printing technology are examined.
- A comparison study on the spindle picking performance is also performed to assess the impact of various hook tooth angle parameters on the picking performance of the spindle. Determine the optimal parameters for the angle of the spindle hook teeth.
2. Materials and Methods
2.1. Analysis of the Working Process of the Picking Mechanism
2.2. Mechanical Analysis of the Spindle Picking Process
2.2.1. External Pressure (Fp)
2.2.2. Centrifugal Force (Fc)
2.2.3. Frictional Force (Ff)
2.3. Analysis of the Structural Characteristics of the Spindle Hook Teeth
2.3.1. Analysis of the Overall Spindle Structure
2.3.2. Analysis of the Spindle Hook Tooth Structure
2.4. Spindle Picking Bench Test
2.4.1. Test Materials and Equipment
2.4.2. Test Design and Evaluation Index
3. Results and Discussion
4. Conclusions and Future Work
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Shen, S.H.; Wang, L.Q. Research on China’s Cotton Industry Security under Open Conditions. China Cotton 2022, 49, 1–6. [Google Scholar]
- Lu, X.R.; Jia, X.Y.; Niu, J.H. The Present Situation and Prospects of Cotton Industry Development in China. Sci. Agric. Sin. 2018, 51, 26–36. [Google Scholar]
- Niu, G.L.; Li, B.; Liu, Y.; Li, Y.X.; Wang, T.; Wang, S.G. Development and Research Status of Cotton Picker in China. J. Chin. Agric. Mech. 2020, 41, 212–218. [Google Scholar]
- Wu, C.Y.; Feng, J.; Chen, C.Q.; Wang, J.H.; Liu, C.; Lin, Y.; Kang, J.M. Analysis of the Status Quo and Mechanization Development of Cotton Producing Industry in China. J. Chin. Agric. Mech. 2021, 42, 215–221. [Google Scholar]
- Meng, F.; Chen, N.; Chen, Z. Hard Chromium Coating Effects on Tribological Performances for Nonlubricated and Lubricated Spindle of Cotton Picker. Proc. Inst. Mech. Eng. Part L J. Mater. Des. Appl. 2016, 230, 446–453. [Google Scholar] [CrossRef]
- Zhang, Y.Q.; Cai, Z.P.; Tian, Y.; Meng, Y. Improvement of Mechanical Properties and Wear Resistance of Cotton Pickers Spindle by Electromagnetic Treatment. Trans. Chin. Soc. Agric. Eng. 2018, 34, 31–37. [Google Scholar]
- Zhang, Y.; Tian, Y.; Meng, Y. Wear Behavior of Spindles of Cotton Picker in Field Work. J. Tribol. Trans. Asme 2021, 143, 021703. [Google Scholar] [CrossRef]
- Li, W.C.; Qiao, Y.Y.; Deng, Y.M.; Liu, X.M.; Zhang, H.W. Valuation and Analysis of Hook Tooth Wear for Cotton Picker Spindle. J. Chin. Agric. Mech. 2018, 39, 11–14. [Google Scholar]
- Amanov, A.; Sembiring, J.P.B.A.; Amanov, T. Experimental Investigation on Friction and Wear Behavior of the Vertical Spindle and V-Belt of a Cotton Picker. Materials 2019, 12, 773. [Google Scholar] [CrossRef] [Green Version]
- Gu, Y.; Zhang, H.; Fu, X.; Wang, L.; Shen, Z.; Wang, J.; Song, Z.; Zhang, L. Experimental Wear Behavior Analysis of Coated Spindle Hook Teeth under Real Harvesting Work Conditions. Materials 2021, 14, 2487. [Google Scholar] [CrossRef]
- Omonov, N.N.; Abdazimov, A.D.; Atadjanova, M.M.; Shodiyev, J.G. Investigation of Spindle Activity of Horizontal Spindle Cotton Harvesting Machine. IOP Conf. Ser. Earth Environ. Sci. 2021, 868, 012073. [Google Scholar] [CrossRef]
- Ravutov, S.T.; Olimjonov, R. Features of Picking Cotton from the Spindles of a Vertical-Spindle Cotton Picker with Their Variable Kinematic Modes. IOP Conf. Ser. Earth Environ. Sci. 2021, 868, 012071. [Google Scholar] [CrossRef]
- Zhang, Y.Q.; Ma, S.H.; Ding, W.C. Dynamic Analysis on Picking Process of Cotton Picker Spindle. Trans. Chin. Soc. Agric. Eng. 2012, 28, 54–58. [Google Scholar]
- Chen, T.G.; Zhang, H.W.; Wang, L.; Wang, Y.G.; Zhang, L.C.; Liu, X.M. Research and Experiment on Movement Characteristics of Picking Mechanism of Horizontal Picking Cotton Picker. Trans. Chin. Soc. Agric. Eng. 2020, 41, 19–25. [Google Scholar]
- Chen, T.G.; Zhang, H.W.; Wang, L.; Zhang, L.C.; Wang, J.; Li, J.X.; Gu, Y.Q. Optimization and Experiments of Picking Head Transmission System of Horizontal Spindle Type Cotton Picker. Trans. Chin. Soc. Agric. Eng. 2020, 36, 18–26. [Google Scholar]
- Li, T.; Hao, F.P.; Han, Z.D.; Fang, X.F.; Hao, Z.H.; Liu, Y.Q. Design and Test of Horizontal Spindle Picking Head with High Efficiency. J. Chin. Agric. Mech. 2018, 49, 233–238. [Google Scholar]
- Zhang, L.C.; Zhang, H.W.; Wang, L.; Fu, X.Q.; Chen, T.G.; Wang, J.; Gu, Y.Q. Influence of Different Boll Shell Physical Parameters on Mechanical Properties of Machine-Harvested Cottons. Trans. Chin. Soc. Agric. Eng. 2020, 36, 30–37. [Google Scholar]
- Baker, K.D.; Hughs, E.; Foulk, J. Cotton Quality as Affected by Changes in Spindle Speed. Appl. Eng. Agric. 2010, 26, 363–369. [Google Scholar] [CrossRef]
- Baker, K.D.; Hughs, E.; Foulk, J. Spindle Speed Optimization for Cotton Pickers. Appl. Eng. Agric. 2015, 31, 217–225. [Google Scholar]
- Baker, K.D.; Delhom, C.D.; Hughs, S.E. Spindle Diameter Effects for Cotton Pickers. Appl. Eng. Agric. 2017, 33, 321–327. [Google Scholar] [CrossRef]
- Zhou, Y.L.; Sun, W.L.; Luo, X.L. New Structure and Parametric Optimization of Horizontal Spindle-type Cotton Picker’s Spindle. Mech. Eng. Auto. 2012, 1, 10–12. [Google Scholar]
- Wu, B. The Analysis of Cotton-Picker Level Spindle’s Material and Heat Treatment Process; Shihezi University: Shihezi, China, 2013. [Google Scholar]
- Sun, Z.; Sun, W.L.; Yu, S.L. Combination and Variation Method-based Cotton Picker Machine Spindle Shape Variation Studies. J. Agric. Mech. Rese. 2019, 41, 45–50. [Google Scholar]
- Liu, X.M.; Zhang, H.W.; Wang, L.; Chen, T.G.; Zhang, L.C.; Wang, Y.Z.; Li, G.G.; Zhang, Y. Study on Winding Model of Spindle Picking Cotton for Horizontal Cotton Picker. Jour. Agric. Mech. Rese. 2020, 42, 13–19. [Google Scholar]
- Rizaev, A.; Matchanov, R.; Yuldashev, A.T.; Kuldashev, D.A.; Djuraeva, N.B.; Karimov, N.; Ashurov, N. Cotton Harvesters for One-Time Cotton-Picking. IOP Conf. Ser. Mater. Sci. Eng. 2021, 1030, 012173. [Google Scholar] [CrossRef]
- Bi, X.S. Research on the Working Mechanism of the Horizontal Spindle Picking Head of the Cotton Picker; Shihezi University: Shihezi, China, 2007. [Google Scholar]
- Yu, S.L.; Zhu, Q.L.; Wang, X.C.; Liu, H.C.; Liu, S.C. Research on Multi Position Forming Method of Picking Spindle Hook Teeth Group of Cotton Picker Based on Machining Center. Mach. Build. Auto. 2021, 50, 33–48. [Google Scholar]
- Wang, R.D.; Yin, J.Z. Crop Cultivation; Higher Education Press: Beijing, China, 2005. [Google Scholar]
- Araujo, T.A.; Araujo, L.H.A.; Silva, N.R.; Luz, C.E.A.; da Silva, E.M.; Moreira, M.D.; Suinaga, F.A.; Picanco, M.C.; Bastos, C.S. Standardized Sampling Plan for Aphis Gossypii Based on the Cotton Cultivar, Plant Phenology and Crop Size. J. Appl. Entom. 2019, 143, 893–901. [Google Scholar] [CrossRef]
- Yan, J.G. Experimental Research on Picking Performance of Cotton Picker Spindle; Shihezi University: Shihezi, China, 2013. [Google Scholar]
- Ministry of Agriculture of the People’s Republic of China. Quality of Cotton Picker Operations: NY/T1133-2006; China Standard Publishing House: Beijing, China, 2006.
- Wei, L.Q.; Wei, M.; Chen, B.; Ge, Y. The Finite Element Analysis and Structure Optimization of Cotton Picker Horizontal Spindles. J. Agric. Mech. Res. 2014, 36, 20–23. [Google Scholar]
Tooth Groove Angle (°) | Before the Tooth Angle (°) | Tooth Inclination Angle (°) |
---|---|---|
54 | 73 | 50 |
58 | 77 | 55 |
62 | 81 | 60 |
66 | 85 | 65 |
70 | 89 | 70 |
The Angle Parameters of the Spindle Hook Teeth | The Angle (°) | Ejection Rate of the Seed Cotton (%) | Harvest Time (s) | Picking Force (N) |
---|---|---|---|---|
Tooth groove angle | 54 | 6.82 | 0.092 | 0.453 |
58 | 6.31 | 0.072 | 0.494 | |
62 | 6.13 | 0.082 | 0.467 | |
66 | 5.26 | 0.089 | 0.472 | |
70 | 4.98 | 0.074 | 0.561 | |
Before the tooth angle | 73 | 5.11 | 0.071 | 0.471 |
77 | 5.42 | 0.084 | 0.487 | |
81 | 4.36 | 0.069 | 0.443 | |
85 | 5.18 | 0.076 | 0.427 | |
89 | 4.87 | 0.078 | 0.454 | |
Tooth inclination angle | 50 | 6.39 | 0.068 | 0.472 |
55 | 5.26 | 0.074 | 0.443 | |
60 | 5.07 | 0.073 | 0.439 | |
65 | 4.23 | 0.076 | 0.483 | |
70 | 4.36 | 0.087 | 0.431 |
The Angle Parameters of the Spindle Hook Teeth | Ejection Rate of Seed Cotton (%) | Harvest Time (s) | Picking Force (N) |
---|---|---|---|
Tooth groove angle | −0.981 ** | −0.340 | 0.719 |
Before the tooth angle | −0.283 | 0.160 | 0.634 |
Tooth inclination angle | −0.931 ** | 0.901 ** | −0.294 |
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Wang, L.; Yin, C.; Zhang, L.; Zhang, H.; Li, H. Analysis and Experiment on the Impact of Various Hook Angle Factors on Spindle Picking Performance. Agriculture 2022, 12, 768. https://doi.org/10.3390/agriculture12060768
Wang L, Yin C, Zhang L, Zhang H, Li H. Analysis and Experiment on the Impact of Various Hook Angle Factors on Spindle Picking Performance. Agriculture. 2022; 12(6):768. https://doi.org/10.3390/agriculture12060768
Chicago/Turabian StyleWang, Lei, Chenghai Yin, Longchang Zhang, Hongwen Zhang, and Haiyang Li. 2022. "Analysis and Experiment on the Impact of Various Hook Angle Factors on Spindle Picking Performance" Agriculture 12, no. 6: 768. https://doi.org/10.3390/agriculture12060768
APA StyleWang, L., Yin, C., Zhang, L., Zhang, H., & Li, H. (2022). Analysis and Experiment on the Impact of Various Hook Angle Factors on Spindle Picking Performance. Agriculture, 12(6), 768. https://doi.org/10.3390/agriculture12060768