Design and Experimental Investigation of a Transplanting Mechanism for Super Rice Pot Seedlings
Abstract
:1. Introduction
2. Materials and Methods
2.1. Working Principle
2.2. Composition
2.3. Kinematic Analysis
2.4. Parameter Optimization
2.4.1. Compilation of Optimization Software
2.4.2. Determination of Optimization Goals
2.4.3. Parameter Determination
2.5. Introduction of Relative Motion Trajectory
3. Results and Discussion
3.1. Experimental Research
Virtual Test
3.2. Trajectory and Attitude Verification Test
3.2.1. Development of Test Bench
3.2.2. High-Speed Camera Test
3.3. Seedling Test
4. Conclusions
- A differential-speed rotary super rice pot seedling transplanting mechanism (PSTM) was proposed, and through the utilization of bespoke super rice PSTM optimization design software, a set of mechanism parameters was optimized to align the transplanting arm with the super rice PSTM. This trajectory and posture required for pot seedling transplantation is significantly beneficial for the mechanized transplanting of super rice pot seedlings.
- Based on the kinematics model of the differential-speed rotary super rice PSTM, the optimization design software was developed, and a set of mechanism parameters that satisfied the super rice pot seedling transplanting requirements was optimized. Using high-speed camera technology, the trajectory and posture of the transplanting mechanism were verified. This validation illustrates the correctness of the theoretical analysis and design method of the transplanting mechanism.
- A rice PSTM test bench was developed, and the seedling picking test was successfully conducted. The test indicated that when the transplanting efficiency is 200 plants/min, the seedling extraction success rate is 97%, and the seedling injury rate is 1.8%. This seedling picking performance complies with the quality and technical specifications of rice pot seedling planting machines and has practical application value.
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
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Input Parameters | Parameter Value/mm | Input Parameters | Parameter Value/° |
---|---|---|---|
r1 | 50 | θ1 | 31 |
r2 | 8 | θ2 | 96 |
r3 | 51 | θ3 | 34 |
r4 | 67 | θ4 | 182 |
r5 | −4 | θ5 | 285 |
r6 | −43 | θ6 | 240 |
r7 | 113 | θ7 | 175 |
r8 | 50 | θ8 | 235 |
r9 | 24 | θ9 | 280 |
r10 | 10 | θ10 | 305 |
r11 | 31 | θ11 | 287 |
S | 150 | δ0 | −35 |
H1 | 40 | φH0 | 35 |
Seedling Picking Angle () | Seedling Pushing Angle () | Angle Difference () | |
---|---|---|---|
Design Requirements | −5–10° | 45–70° | 50–60° |
Theoretical Design | 8° | 62° | 54° |
Physical Prototype | 6.62° | 59.32° | 52.7° |
Rotating Speed/rpm | Number of Seedlings in Seedling Tray/Plant | The Number of Seedlings Taken out/Plant | Seedling Success Rate/% | Injury Rate/% |
---|---|---|---|---|
90 | 812 | 780 | 96 | 1.5% |
100 | 812 | 788 | 97 | 1.8% |
110 | 812 | 756 | 93 | 2.2% |
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Zhou, M.; Wei, Z.; Wang, Z.; Sun, H.; Wang, G.; Yin, J. Design and Experimental Investigation of a Transplanting Mechanism for Super Rice Pot Seedlings. Agriculture 2023, 13, 1920. https://doi.org/10.3390/agriculture13101920
Zhou M, Wei Z, Wang Z, Sun H, Wang G, Yin J. Design and Experimental Investigation of a Transplanting Mechanism for Super Rice Pot Seedlings. Agriculture. 2023; 13(10):1920. https://doi.org/10.3390/agriculture13101920
Chicago/Turabian StyleZhou, Maile, Zhaoxiang Wei, Zeliang Wang, Hao Sun, Guibin Wang, and Jianjun Yin. 2023. "Design and Experimental Investigation of a Transplanting Mechanism for Super Rice Pot Seedlings" Agriculture 13, no. 10: 1920. https://doi.org/10.3390/agriculture13101920
APA StyleZhou, M., Wei, Z., Wang, Z., Sun, H., Wang, G., & Yin, J. (2023). Design and Experimental Investigation of a Transplanting Mechanism for Super Rice Pot Seedlings. Agriculture, 13(10), 1920. https://doi.org/10.3390/agriculture13101920