Multifunctional oil tea pollination device and method

By designing a multifunctional oil tea pollination device, using the technology of combining wrap cover and atomizing spray head, the problem of pollen waste caused by wind blowing in the pollination process in the prior art is solved, and efficient and accurate oil tea pollination is achieved.

CN120052246APending Publication Date: 2025-05-30YONGZHOU VOCATIONAL & TECH COLLEGE
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Patent Information

Application Number
CN202510444721.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-10
Publication Date
2025-05-30

AI Technical Summary

Technical Problem

During the pollination process, existing oil tea pollination devices are prone to blowing pollen or pollen solutions due to wind blowing, resulting in low pollination efficiency and waste of pollen.

Method used

A multifunctional oil tea pollination device is designed, using a combination of a wrap cover and an atomizing spray head. Through the coordination of the adjustment mechanism and a micro pump, precise spraying and angle adjustment of the pollen solution is achieved to avoid the influence of wind blowing.

Benefits of technology

It effectively avoids the waste of pollen solution due to wind blowing during the pollination process, improves the efficiency and accuracy of pollination, and reduces the waste of pollen.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the related technical field of camellia oleifera planting, and particularly relates to a multifunctional camellia oleifera pollination device and method, the multifunctional camellia oleifera pollination device comprises a shell, the left end of the shell is provided with an adjusting mechanism, the left end of the adjusting mechanism is in threaded connection with a first connecting pipe, and the right end of the first connecting pipe is provided with a threaded connector. Through mutual cooperation of a worm I, a worm gear I, a rotating rod II, a transmission wheel III and a transmission wheel IV, the effect of driving the two rotating rods I to rotate can be achieved; through rotation of a first rotating rod and mutual cooperation of an arranged rotating plate, a mounting block, a first connecting pipe, a second connecting pipe and a third connecting pipe, the atomizing spray head can be driven to rotate around the first rotating rod, and therefore the spraying angle of the atomizing spray head in the using process is adjusted; an operator can conveniently carry out pollination operation on camellia oleifera flowers at different positions, and the spraying space of a pollen solution can be limited under the action of an arranged wrapping cover in the spraying process of the pollen solution.
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Description

Technical Field

[0001] The present invention belongs to the technical field related to oil-tea camellia planting, and particularly relates to a multifunctional oil-tea camellia pollination device and method. Background Art

[0002] Oil-tea camellia is a general term for tree species in the genus Camellia of the family Theaceae with a relatively high oil content in seeds and a certain cultivated area. It is known as one of the world's four major woody oil plants together with coconut, oil palm, and olive, and is known as one of the four major woody oil plants in China together with tung tree, walnut, and Chinese tallow tree. Due to the relatively special flowering period of the oil-tea camellia tree, the existing oil-tea camellia planters generally need to perform artificial pollination operations on the oil-tea camellia.

[0003] Problems existing in the prior art: 1. During the pollination process of the existing oil-tea camellia, pollen or pollen solution is easily scattered or deviated from the spraying track due to the influence of wind, which not only affects the pollination process but also causes waste of pollen.

[0004] 2. Most of the existing oil-tea camellia pollinations are carried out by manually using a pollination stick to adhere pollen and smear it on the camellia flowers that need to be pollinated. This manual pollination method is not only inconvenient to operate but also results in low pollination efficiency.

[0005] 3. During the pollination process of the existing oil-tea camellia pollination device, due to the different heights and angles of the positions where the oil-tea camellia flowers are located, there are certain inconveniences in the process of using the device, and the flexibility of the device during the pollination process is poor.

[0006] 4. After the existing oil-tea camellia pollination device is used, it is inconvenient to clean it, so that part of the pollen solution or pollen remains inside the device, resulting in the accumulation of pollen or pollen solution, which has a certain impact on the subsequent use of the device.

[0007] 5. During the use of the existing oil-tea camellia pollination device, the situation of uneven pollination is likely to occur, which is likely to cause deformed bells and missing chambers, and thus reduce the pollination success rate. Summary of the Invention

[0008] The purpose of the present invention is to provide a multifunctional oil-tea camellia pollination device and method, which can solve the problem that during the pollination process of the existing oil-tea camellia pollination device, pollen or pollen solution is easily scattered or deviated from the spraying track due to the influence of wind, which not only affects the pollination process but also causes waste of pollen.

[0009] The technical solutions adopted by the present invention are specifically as follows: A multifunctional oil-tea camellia pollination device and method, including a housing. An adjustment mechanism is provided at the left end of the housing. The left end and the right end of the adjustment mechanism are threadedly connected to a first connecting pipe with a threaded connector. The first connecting pipe is threadedly connected to a second connecting pipe with another threaded connector provided at its right end through a threaded structure provided at its left end. An atomizing nozzle is provided at the left end of the second connecting pipe. The front and rear sides of the adjustment mechanism are respectively movably connected to the front and rear ends of the housing. The adjustment mechanism is in meshing transmission with a first worm. The left side of the adjustment mechanism is fixedly connected to one end of a first guide pipe. The other end of the first guide pipe is fixedly connected to a micro pump. The lower side of the micro pump is fixedly connected to the upper end of a stirring mechanism. The upper side of the stirring mechanism is fixedly connected to the lower end of the housing. The lower side of the stirring mechanism is lapped with the upper end of a pollen solution tank provided with a sealing rubber ring at its upper end. The pollen solution tank is arranged on a base mounting mechanism. The lower side of the base mounting mechanism is inserted into an annular lapping plate with two limiting holes opened inside. The right side of the base mounting mechanism is adapted to a toothed plate. The upper end of the base mounting mechanism is fixedly connected to the lower end of the housing. A charging socket is provided at the right end of the housing, and a protective mechanism is lapped at the right end of the charging socket. The protective mechanism is installed at the right end of the housing. The lower end of the housing is movably connected to a hollow rotating pipe. The hollow rotating pipe is sleeved on the upper side of the stirring mechanism. A first gear is fixedly connected to the lower end of the hollow rotating pipe. The first gear is in meshing transmission with the stirring mechanism.

[0010] A wrapping cover is provided on the second connecting pipe. A first transmission wheel is fixedly connected to the upper end of the hollow rotating pipe. The first transmission wheel is in transmission connection with a second transmission wheel through a transmission belt provided. The second transmission wheel is fixedly connected to the output shaft of a small motor. The small motor is fixedly connected to the inner bottom surface of the housing. The upper and lower ends of the housing are respectively movably connected to the upper and lower sides of the first worm. A rotating handle is provided at the upper end of the first worm. A micro pump is fixedly installed at the upper end of the housing. A portable handle is fixedly connected to the upper end of the housing, and an anti-slip sleeve is provided on the portable handle. The lower end of the housing is fixedly connected to the upper end of the toothed plate. Dust-proof and heat-dissipating nets are provided at both the front and rear ends of the housing. The left end of the housing is fixedly connected to the left side of the first guide pipe. The annular lapping plate is fixedly connected to the lower end of the pollen solution tank. A bottom guide block is provided on the inner bottom surface of the pollen solution tank. A storage battery is provided at the right end inside the housing. A control panel is provided at the front end of the housing.

[0011] The adjusting mechanism includes a first worm gear, which is in meshing transmission with a first worm. The first worm gear is fixedly connected to a second rotating rod. The front and rear sides of the second rotating rod are respectively movably connected to the front and rear ends of the housing. Both the front and rear ends of the second rotating rod are fixedly connected with fourth transmission wheels. The two fourth transmission wheels are respectively in transmission connection with two third transmission wheels through two other transmission belts provided. The two third transmission wheels are respectively fixedly connected to one ends of two first rotating rods. The other ends of the two first rotating rods are both fixedly connected with rotating plates. The left ends of the two rotating plates are respectively fixedly connected to the front and rear ends of the mounting block. A third connecting pipe is fixedly connected to the mounting block. The third connecting pipe is in threaded connection with a first connecting pipe provided with a threaded connection head at its right end through a threaded structure provided at its left end. The right end of the third connecting pipe is fixedly connected to one end of a connecting hose. The other end of the connecting hose is fixedly connected to the left end of a first guiding pipe. A first fixing plate is movably connected to each of the two first rotating rods. The right ends of the two first fixing plates are both fixedly connected to the left end of the housing.

[0012] The stirring mechanism includes a protective housing. The upper end of the protective housing is fixedly connected to the lower end of the housing. The lower end of the protective housing is fixedly connected to a second guiding pipe. The upper side of the second guiding pipe is sleeved with a hollow rotating pipe. The upper end of the second guiding pipe is fixedly connected to the lower side of a micro pump. The lower end of the protective housing is respectively movably connected to the upper sides of four stirring rods. The upper ends of the four stirring rods are all fixedly connected with second gears. The four second gears are all in meshing transmission with a first gear. The lower end of the protective housing is lapped with the upper end of a pollen solution tank provided with sealing rubber rings at its upper and lower ends.

[0013] The protection mechanism includes two third fixing plates. The left ends of the two third fixing plates are both fixedly connected to the right end of the housing. The relatively close ends of the two third fixing plates are respectively fixedly connected to the upper and lower ends of two first fixing rods. A first spring is sleeved on each of the two first fixing rods. The upper ends of the two first springs are both fixedly connected to the upper third fixing plate. The lower ends of the two first springs are both fixedly connected to a sliding plate. The two first fixing rods are both slidably connected to the sliding plate internally provided with two through holes. The right end of the sliding plate is movably connected to two hinge plates. The lower ends of the two hinge plates are respectively movably connected to two second fixing rods. The two second fixing rods are both fixedly connected to the right end of an L-shaped protective baffle. The left end of the L-shaped protective baffle is lapped with the right end of a charging socket. The front and rear ends of the L-shaped protective baffle are both fixedly connected with third rotating rods. A second fixing plate is movably connected to each of the two third rotating rods. The left ends of the two second fixing plates are both fixedly connected to the right end of the housing.

[0014] The base mounting mechanism includes a support base. The support base is lapped with the lower end of the pollen solution tank through a placement groove opened inside its upper end. Two limit rods are fixedly connected to the upper end of the support base. Both of the two limit rods are inserted into a circular lapping plate with two limit holes opened inside. Two mounting frames are fixedly connected to the right side of the support base. Both of the two mounting frames are movably connected to two T-shaped limiting rods respectively through limiting holes opened inside their upper ends.

[0015] The upper ends of both of the two T-shaped limiting rods are fixedly connected to the lower end of the housing. L-shaped plates are fixedly connected to the relatively close ends of both of the two mounting frames. The front and back sides of a second worm are movably connected to the two L-shaped plates respectively. A third gear is fixedly connected to the middle position of the second worm. The third gear is adapted to a toothed plate. The second worm is in meshing transmission with two second worm wheels. One ends of two fourth rotating rods are fixedly connected to the two second worm wheels respectively.

[0016] The other ends of both of the two fourth rotating rods are fixedly connected to cams. The relatively close ends of the two cams are lapped with the relatively far ends of two vertical plates respectively. Both of the two vertical plates are slidably connected to two third fixed rods through two circular holes opened inside them. Two second springs are sleeved on both of the two third fixed rods. The relatively close ends of the four second springs are fixedly connected to the relatively far ends of the two vertical plates respectively. The relatively far ends of the four second springs are fixedly connected to two L-shaped frames respectively. The front and back ends of both of the two third fixed rods are fixedly connected to the two L-shaped frames respectively. The relatively close ends of the two L-shaped frames are fixedly connected to the relatively far ends of both of the two mounting frames respectively.

[0017] Connecting rods are fixedly connected to the relatively far ends of both of the two vertical plates. Arc-shaped clamping plates are fixedly connected to the left sides of both of the two connecting rods. The relatively close ends of the two arc-shaped clamping plates are lapped with the front and back ends of the pollen solution tank respectively. The two fourth rotating rods are movably connected to the two mounting frames respectively. Two electro-hydraulic rods are fixedly connected to the upper end of the support base. The upper ends of both of the two electro-hydraulic rods are fixedly connected to the lower end of the housing.

[0018] A usage method of a multifunctional oil-tea camellia pollination device includes the following steps: a1. When using this device to perform pollination operations on camellia oleifera flowers, first start the two electro-hydraulic rods to drive the support base to move downward by a certain distance. During the process of driving the support base downward, as the toothed plate starts to mesh with the third gear, it can drive the second worm to rotate. Through the rotation of the second worm, with the mutual cooperation among the second worm gear, the fourth rotating rod, the cam, the second spring, the vertical plate, the third fixed rod, and the connecting rod, the two arc-shaped clamping plates can be driven to move away from each other, and then the pollen solution tank can be conveniently removed from the support base. At this time, the prepared pollen solution can be injected into the pollen solution tank. After the pollen solution injection is completed, place the pollen solution tank on the upper end of the support base through the cooperation of the annular overlapping plate and the limiting rod. Then start the two electro-hydraulic rods again to drive the support base to move upward until the lower end of the pollen solution tank overlaps with the lower end of the protective housing, and at this time, the fixation of the pollen solution tank can be achieved. a2. After the pollen solution tank is fixed again, the operator holds the portable handle and wraps the wrapping cover around the camellia oleifera flower to be pollinated. Then start the micro pump. Through the mutual cooperation among the first guide pipe, the second guide pipe, the first connecting pipe, the second connecting pipe, the third connecting pipe, the connecting hose, and the atomizing nozzle, the pollen solution inside the pollen solution tank can be pumped out and sprayed onto the camellia oleifera flower, thus achieving the pollination operation on the camellia oleifera flower. During the pollination process of the camellia oleifera flower, the wrapping cover can limit the spraying space of the pollen solution and also avoid waste caused by the influence of wind during the spraying of the pollen solution. a3. During the spraying process of the pollen solution, when the spraying angle needs to be adjusted, the operator rotates the first worm. Then, with the cooperation of the first worm gear, the second rotating rod is driven to rotate. Through the rotation of the second rotating rod, with the cooperation of the third transmission wheel, the fourth transmission wheel, the first rotating rod, the rotating plate, and the mounting block, the first connecting pipe, the second connecting pipe, the third connecting pipe, the atomizing nozzle, and the wrapping cover can be driven to rotate around the two first rotating rods, thus achieving the adjustment process of the spraying angle during the spraying of the pollen solution and facilitating the operator to perform pollination operations on camellia oleifera flowers at different positions. a4. When the spraying distance needs to be adjusted, the operator can thread-mount multiple first connecting pipes between the second connecting pipe and the third connecting pipe to achieve the adjustment process of the spraying distance of this device, which is convenient for pollinating camellia oleifera flowers at different heights. During the use of this device, start the small motor. Then, with the cooperation of the first transmission wheel and the second transmission wheel, the hollow rotating pipe can be driven to rotate. The rotation of the hollow rotating pipe can drive the four stirring rods to rotate with the cooperation of the first gear and the second gear, thus achieving the stirring process of the pollen solution inside the pollen solution tank and ensuring the uniformity of the internal components of the pollen solution. a5. When the device needs to be charged after use, rotate the L-shaped protective baffle upward by pulling it, and the charging socket will be exposed. At this time, the operator can charge the device through the charging socket. After charging, under the action of the second spring, the sliding plate can be pushed downward. Then, with the cooperation of the hinge plate and the second fixing rod, the L-shaped protective baffle can be driven to rotate downward around the two third rotating rods until the left end of the L-shaped protective baffle overlaps with the right end of the charging socket, thus protecting the charging socket.

[0019] The technical effects achieved by the present invention are as follows: 1. Through the mutual cooperation among the first worm, the first worm gear, the second rotating rod, the third transmission wheel and the fourth transmission wheel of the present invention, the effect of driving the two first rotating rods to rotate can be achieved. Through the rotation of the first rotating rods, with the mutual cooperation among the rotating plate, the mounting block, the first connecting pipe, the second connecting pipe and the third connecting pipe, the atomizing nozzle can be driven to rotate around the first rotating rods, so as to adjust the spraying angle of the atomizing nozzle during use, which is convenient for the operator to pollinate the camellia oleifera at different positions. And during the spraying process of the pollen solution, under the action of the wrapping cover, the spraying space of the pollen solution can be limited, so that the pollen solution can be fully sprayed onto the camellia oleifera, and it can also effectively avoid the waste of the pollen solution caused by the influence of wind during the spraying process.

[0020] 2. The first connecting pipe, the second connecting pipe and the third connecting pipe of the present invention are all installed in a threaded connection manner. Therefore, during the use of the device, multiple first connecting pipes can be threadedly installed between the second connecting pipe and the third connecting pipe according to the requirement of the spraying distance, and then the adjustment process of the spraying distance of the device can be achieved, which is convenient for pollinating the camellia oleifera at different height positions and increases the flexibility of the device during the pollination process of the camellia oleifera. Through the mutual cooperation among the micro pump, the first guiding pipe, the second guiding pipe, the first connecting pipe, the second connecting pipe, the third connecting pipe and the atomizing nozzle, the pollen solution in the pollen solution tank can be pumped out and sprayed onto the camellia oleifera, so as to achieve the pollination operation of the camellia oleifera.

[0021] 3. The present invention can drive the hollow rotating tube to rotate through the mutual cooperation among the small motor, the first transmission wheel, and the second transmission wheel. Through the rotation of the hollow rotating tube, under the cooperation of the first gear and the second gear, the four stirring rods can be driven to rotate, thereby achieving the stirring process of the pollen solution in the pollen solution tank, ensuring the uniformity of the pollen in the pollen solution, and thus ensuring the consistency during the pollination process of camellia oleifera. The support base provided can conveniently place the device on any plane when the device is idle, facilitating the placement of the device and ensuring its stability during the placement process. The bottom guide block provided can guide the pollen solution at the bottom of the pollen solution tank, thereby reducing the residue of the pollen solution at the bottom of the pollen solution tank.

[0022] 4. The present invention can make the L-shaped protective baffle closely adhere to the right end of the charging socket through the mutual cooperation among the third fixing plate, the second spring, the sliding plate, the first fixing rod, the hinged plate, the second fixing rod, and the third rotating rod, thereby playing a role in protecting the charging socket. Correspondingly, when the device needs to be charged, the charging socket can be exposed by upwardly pulling the L-shaped protective baffle, so as to perform the charging operation on the device. The dust-proof and heat-dissipating net provided can increase the heat dissipation effect inside the housing during the use of the device. The mutual cooperation between the limiting rod and the arc-shaped overlapping plate can play a role in restricting the placement position of the pollen solution tank.

[0023] 5. The electric hydraulic rod provided in the present invention can drive the support base to move in the up and down directions, so that the device can not only quickly realize the installation process of the pollen solution tank, but also conveniently remove the pollen solution tank from the device, facilitating the operator to clean the inside of the pollen solution tank. At the same time, it can also conveniently add pollen solution into the pollen solution tank. During the installation process of the pollen solution tank, the mutual cooperation among the toothed plate, the third gear, the second worm, the second worm gear, the fourth rotating rod, and the cam can push the two vertical plates to approach each other. Then, with the cooperation of the connecting rod and the arc-shaped clamping plate, the fixing effect on the pollen solution tank can be further achieved, ensuring the stability during the installation process of the pollen solution tank. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 is the main view sectional three-dimensional structure schematic diagram of the present invention; Figure 2 is the main view three-dimensional structure schematic diagram of the present invention; Figure 3 is the main view three-dimensional structure schematic diagram of the second connecting pipe of the present invention; Figure 4 is the main view sectional three-dimensional structure schematic diagram of the wrapping cover of the present invention; Figure 5 is the front view three-dimensional structure schematic diagram of the pollen solution tank in the present invention; Figure 6 is the front view three-dimensional structure schematic diagram of the adjustment mechanism in the present invention; Figure 7 is the front view sectional three-dimensional structure schematic diagram of the stirring mechanism in the present invention; Figure 8 is the right view three-dimensional structure schematic diagram of the protection mechanism in the present invention; Figure 9 is the front view three-dimensional structure schematic diagram of the base mounting mechanism in the present invention; Figure 10 is the right view three-dimensional structure schematic diagram of the base mounting mechanism in the present invention; Figure 11 is the top view three-dimensional structure schematic diagram of the base mounting mechanism in the present invention.

[0025] In the attached drawings, the list of components represented by each reference numeral is as follows: 1. Shell; 2. First worm; 3. Micro pump; 4. Adjustment mechanism; 41. Third connecting pipe; 42. Mounting block; 43. Connecting hose; 44. Rotating plate; 45. First fixing plate; 46. Third transmission wheel; 47. First rotating rod; 48. Fourth transmission wheel; 49. Second rotating rod; 410. First worm gear; 5. Portable handle; 6. Protection mechanism; 61. L-shaped protection baffle; 62. Second fixing plate; 63. Third rotating rod; 64. Hinge plate; 65. Sliding plate; 66. First fixing rod; 67. First spring; 68. Third fixing plate; 69. Second fixing rod; 7. Stirring mechanism; 71. Stirring rod; 72. Second guiding pipe; 73. Protection housing; 74. Second gear; 8. Base mounting mechanism; 81. Support base; 82. Limiting rod; 83. Arc-shaped clamping plate; 84. Connecting rod; 85. Mounting frame; 86. T-shaped limiting rod; 87. Cam; 88. Second worm gear; 89. L-shaped frame; 810. Second worm; 811. Third fixing rod; 812. Second spring; 813. Vertical plate; 814. Electric hydraulic rod; 815. Fourth rotating rod; 816. Third gear; 817. L-shaped plate; 9. Rack; 10. Annular overlapping plate; 11. Bottom guiding block; 12. Pollen solution tank; 13. Charging socket; 14. Battery; 15. First guiding pipe; 16. First gear; 17. First transmission wheel; 18. Hollow rotating pipe; 19. Dust-proof and heat-dissipating net; 20. Second transmission wheel; 21. Small motor; 22. First connecting pipe; 23. Second connecting pipe; 24. Atomizing nozzle; 25. Wrapping cover; 26. Control panel. Detailed implementation manners

[0026] To make the objectives and advantages of the present invention more clear and understandable, the present invention will be specifically described below in conjunction with embodiments. It should be understood that the following text is only used to describe one or several specific implementation manners of the present invention, and does not strictly limit the specific scope of protection claimed by the present invention.

[0027] As Figures 1-11 shown, a multifunctional oil-tea pollination device and method includes a housing 1. A regulating mechanism 4 is provided at the left end of the housing 1. The left end and the right end of the regulating mechanism 4 are threadedly connected to a connecting pipe 22 with a threaded connection head. The connecting pipe 22 is threadedly connected to a connecting pipe 23 with another threaded connection head provided at its right end through a threaded structure provided at its left end. A spray nozzle 24 is provided at the left end of the connecting pipe 23. The front and rear sides of the regulating mechanism 4 are respectively movably connected to the front and rear ends of the housing 1. The regulating mechanism 4 is in meshing transmission with a first worm 2. The left side of the regulating mechanism 4 is fixedly connected to one end of a guiding pipe 15. The other end of the guiding pipe 15 is fixedly connected to a micro pump 3. By rotating the first worm 2, the angle of the spray nozzle 24 during use can be adjusted under the cooperation of the provided regulating mechanism 4, connecting pipe 22 and connecting pipe 23, so that the device can be easily adapted to the oil-tea flowers at different angular positions during the pollination process, increasing the flexibility of the device during the pollination operation; The lower side of the micro pump 3 is fixedly connected to the upper end of the stirring mechanism 7. The upper side of the stirring mechanism 7 is fixedly connected to the lower end of the housing 1. The lower side of the stirring mechanism 7 overlaps with the upper end of the pollen solution tank 12 provided with a sealing rubber ring at the upper end. The pollen solution tank 12 is arranged on the base mounting mechanism 8. The lower side of the base mounting mechanism 8 is inserted into the annular overlapping plate 10 with two limiting holes opened inside. The right side of the base mounting mechanism 8 is adapted to the toothed plate 9. Through the cooperation of the provided base mounting mechanism 8 and the stirring mechanism 7, the installation and disassembly effects of the pollen solution tank 12 can be quickly achieved. And during the process of fixedly installing the pollen solution tank 12, through the cooperation of the provided base mounting mechanism 8 and the toothed plate 9, the fixing effect on the pollen solution tank 12 can be further achieved, ensuring the stability during the installation process of the pollen solution tank 12. The upper end of the base mounting mechanism 8 is fixedly connected to the lower end of the housing 1. A charging socket 13 is arranged at the right end of the housing 1, and a protective mechanism 6 overlaps with the right end of the charging socket 13. The protective mechanism 6 is installed at the right end of the housing 1. Through the provided protective mechanism 6, the protection effect on the charging socket 13 can be achieved. The lower end of the housing 1 is movably connected to the hollow rotating pipe 18. The hollow rotating pipe 18 is sleeved on the upper side of the stirring mechanism 7. A gear one 16 is fixedly connected to the lower end of the hollow rotating pipe 18. The gear one 16 is meshed and driven with the stirring mechanism 7. Through the rotation of the hollow rotating pipe 18, under the action of the provided gear one 16 and the stirring mechanism 7, the stirring process of the pollen solution inside the pollen solution tank 12 can be achieved, ensuring the uniformity of the pollen inside the pollen solution and the uniformity during the pollination process of the device.

[0028] Furthermore, a wrapping cover 25 is provided on the second connecting pipe 23. The upper end of the hollow rotating pipe 18 is fixedly connected with a first transmission wheel 17. The first transmission wheel 17 is in transmission connection with a second transmission wheel 20 through a provided transmission belt. The second transmission wheel 20 is fixedly connected with the output shaft of a small motor 21. The small motor 21 is fixedly connected to the inner bottom surface of the housing 1. The upper and lower ends of the housing 1 are respectively movably connected to the upper and lower sides of the first worm 2. A micro pump 3 is fixedly installed at the upper end of the housing 1. A portable handle 5 is fixedly connected to the upper end of the housing 1. The lower end of the housing 1 is fixedly connected to the upper end of the toothed plate 9. Dust-proof and heat-dissipating nets 19 are provided at the front and rear ends of the housing 1. The left end of the housing 1 is fixedly connected to the left side of the first guiding pipe 15. An annular overlapping plate 10 is fixedly connected to the lower end of the pollen solution tank 12. A bottom guiding block 11 is provided on the inner bottom surface of the pollen solution tank 12. A storage battery 14 is provided at the right end inside the housing 1. A control panel 26 is provided at the front end of the housing 1. The provided wrapping cover 25 can limit the space for spraying the pollen solution and can also prevent waste caused by the influence of wind during the spraying of the pollen solution. Through the rotation of the output shaft of the small motor 21 and the cooperation of the provided first transmission wheel 17 and second transmission wheel 20, the effect of driving the hollow rotating pipe 18 to rotate can be achieved. By starting the micro pump 3 and the cooperation of the provided stirring mechanism 7, first guiding pipe 15, adjusting mechanism 4, first connecting pipe 22, second connecting pipe 23 and atomizing nozzle 24, the pollen solution inside the pollen solution tank 12 can be sprayed onto the camellia oleifera flowers, thereby achieving the pollination process of the camellia oleifera flowers. The provided bottom guiding block 11 can effectively reduce the residue of the pollen solution at the bottom of the pollen solution tank 12.

[0029] Furthermore, the adjusting mechanism 4 includes a first worm gear 410 which meshes with and drives the first worm 2. The first worm gear 410 is fixedly connected to the second rotating rod 49. The front and rear sides of the second rotating rod 49 are respectively movably connected to the front and rear ends of the housing 1. Both the front and rear ends of the second rotating rod 49 are fixedly connected with fourth transmission wheels 48. The two fourth transmission wheels 48 are respectively connected to the two third transmission wheels 46 through two other transmission belts. The two third transmission wheels 46 are respectively fixedly connected to one ends of the two first rotating rods 47. The other ends of the two first rotating rods 47 are both fixedly connected with rotating plates 44. The left ends of the two rotating plates 44 are respectively fixedly connected to the front and rear ends of the mounting block 42. A third connecting pipe 41 is fixedly connected to the mounting block 42. The third connecting pipe 41 is threadedly connected to the first connecting pipe 22 with a threaded structure at its left end and a threaded connector at its right end. The right end of the third connecting pipe 41 is fixedly connected to one end of the connecting hose 43. The other end of the connecting hose 43 is fixedly connected to the left end of the first guiding pipe 15. Fixing plates 45 are movably connected to both of the first rotating rods 47. The right ends of the two fixing plates 45 are both fixedly connected to the left end of the housing 1. By rotating the first worm 2, the second rotating rod 49 can be driven to rotate under the action of the first worm gear 410 arranged. Through the rotation of the second rotating rod 49 and the cooperation of the third transmission wheels 46, fourth transmission wheels 48, first rotating rods 47, rotating plates 44 and the mounting block 42 arranged, the third connecting pipe 41 can be driven to rotate around the two first rotating rods 47, so that the angle adjustment process of the atomizing nozzle 24 during use can be achieved under the cooperation of the first connecting pipe 22 and the second connecting pipe 23 arranged.

[0030] The stirring mechanism 7 includes a protective housing 73. The upper end of the protective housing 73 is fixedly connected to the lower end of the housing 1. The lower end of the protective housing 73 is fixedly connected to the second guiding pipe 72. The upper side of the second guiding pipe 72 is sleeved with the hollow rotating pipe 18. The upper end of the second guiding pipe 72 is fixedly connected to the lower side of the micro pump 3. The lower end of the protective housing 73 is respectively movably connected to the upper sides of the four stirring rods 71. The upper ends of the four stirring rods 71 are all fixedly connected with second gears 74. The four second gears 74 are all meshed with and driven by the first gear 16. The lower end of the protective housing 73 is lapped with the upper end of the pollen solution tank 12 provided with sealing rubber rings at its lower and upper ends. By rotating the hollow rotating pipe 18, the four stirring rods 71 can be driven to rotate under the cooperation of the first gear 16 and the second gears 74 arranged, and then the stirring process of the pollen solution inside the pollen solution tank 12 can be achieved, ensuring the uniformity of the pollen components in the pollen solution, and thus ensuring the uniformity of the device during the pollination process.

[0031] The protection mechanism 6 includes two third fixed plates 68. The left ends of the two third fixed plates 68 are fixedly connected to the right end of the housing 1. The relatively close ends of the two third fixed plates 68 are respectively fixedly connected to the upper and lower ends of two first fixed rods 66. A first spring 67 is sleeved on each of the two first fixed rods 66. The two first fixed rods 66 are both slidably connected to a sliding plate 65 with two through holes formed inside. The right end of the sliding plate 65 is movably connected to two hinge plates 64. The lower ends of the two hinge plates 64 are respectively movably connected to two second fixed rods 69. The two second fixed rods 69 are both fixedly connected to the right end of an L-shaped protection baffle 61. The left end of the L-shaped protection baffle 61 abuts against the right end of the charging socket 13. Rotating rods three 63 are fixedly connected to the front and rear ends of the L-shaped protection baffle 61. Two second fixed plates 62 are movably connected to the two rotating rods three 63. The left ends of the two second fixed plates 62 are fixedly connected to the right end of the housing 1. By arranging the first spring 67, the sliding plate 65 can be pushed to move downward. Then, with the cooperation of the arranged hinge plates 64 and the second fixed rods 69, the L-shaped protection baffle 61 can be driven to rotate downward around the two rotating rods three 63 until the left end of the L-shaped protection baffle 61 abuts against the right end of the charging socket 13, thereby playing a role in protecting the charging socket 13. Correspondingly, by upwardly pulling the L-shaped protection baffle 61, the charging socket 13 can be exposed, thus facilitating the charging of the device.

[0032] The base mounting mechanism 8 includes a support base 81. The support base 81 is lapped with the lower end of the pollen solution tank 12 through a placement groove opened inside its upper end. Two limit rods 82 are fixedly connected to the upper end of the support base 81. Both of the two limit rods 82 are inserted into a circular lapping plate 10 with two limit holes opened inside. Two mounting brackets 85 are fixedly connected to the right side of the support base 81. Both of the two mounting brackets 85 are movably connected to two T-shaped limiting rods 86 respectively through limit holes opened inside their upper ends. The upper ends of the two T-shaped limiting rods 86 are fixedly connected to the lower end of the housing 1. L-shaped plates 817 are fixedly connected to the relatively close ends of the two mounting brackets 85. The two L-shaped plates 817 are respectively movably connected to the front and rear sides of a second worm 810. A third gear 816 is fixedly connected to the middle position of the second worm 810. The third gear 816 is adapted to a toothed plate 9. The second worm 810 is in meshing transmission with two second worm wheels 88. The two second worm wheels 88 are respectively fixedly connected to one ends of two fourth rotating rods 815. The other ends of the two fourth rotating rods 815 are both fixedly connected with cams 87. The relatively close ends of the two cams 87 are respectively lapped with the relatively far ends of two vertical plates 813. Both of the two vertical plates 813 are slidably connected to two third fixing rods 811 through two circular holes opened inside them. Two second springs 812 are sleeved on both of the two third fixing rods 811. The front and rear ends of the two third fixing rods 811 are respectively fixedly connected to two L-shaped frames 89. The relatively close ends of the two L-shaped frames 89 are respectively fixedly connected to the relatively far ends of the two mounting brackets 85. Connecting rods 84 are fixedly connected to the relatively far ends of the two vertical plates 813. Arc-shaped clamping plates 83 are fixedly connected to the left sides of the two connecting rods 84. The relatively close ends of the two arc-shaped clamping plates 83 are respectively lapped with the front and rear ends of the pollen solution tank 12. The two fourth rotating rods 815 are respectively movably connected to the two mounting brackets 85. Two electro-hydraulic rods 814 are fixedly connected to the upper end of the support base 81. The upper ends of the two electro-hydraulic rods 814 are both fixedly connected to the lower end of the housing 1. By starting the two electro-hydraulic rods 814 to drive the support base 81 to move downward by a certain distance, when the toothed plate 9 starts to mesh with the third gear 816 during the process of driving the support base 81 to move downward, the second worm 810 can be driven to rotate as the support base 81 continues to move downward. Through the rotation of the second worm 810 and the cooperation of the second worm wheels 88, the fourth rotating rods 815, the cams 87, the second springs 812 and the third fixing rods 811 arranged, the two vertical plates 813 can be driven to move away from each other. At this time, with the cooperation of the two connecting rods 84 arranged, the two arc-shaped clamping plates 83 can be driven to move away from each other, so that the pollen solution tank 12 can be conveniently removed from the device. The stability of the support base 81 during the moving process can be increased through the cooperation of the mounting brackets 85 and the T-shaped limiting rods 86 arranged.

[0033] A method for using a multifunctional oil-tea camellia pollination device includes the following steps: a1. When using this device to pollinate camellia oleifera flowers, first start the two electro-hydraulic rods 814 to drive the support base 81 to move downward by a certain distance. During the process of driving the support base 81 to move downward, as the toothed plate 9 starts to mesh with the third gear 816, it can drive the second worm 810 to rotate. Through the rotation of the second worm 810, with the mutual cooperation among the second worm gear 88, the fourth rotating rod 815, the cam 87, the second spring 812, the vertical plate 813, the third fixed rod 811 and the connecting rod 84, the two arc-shaped clamping plates 83 can be driven to move away from each other, and then the pollen solution tank 12 can be conveniently removed from the support base 81. At this time, the prepared pollen solution can be injected into the pollen solution tank 12. After the pollen solution injection is completed, the pollen solution tank 12 is placed on the upper end of the support base 81 through the cooperation of the annular overlapping plate 10 and the limiting rod 82. Then start the two electro-hydraulic rods 814 again to drive the support base 81 to move upward until the lower end of the pollen solution tank 12 overlaps with the lower end of the protective housing 73, and at this time, the fixation of the pollen solution tank 12 can be achieved; a2. After the pollen solution tank 12 is fixed again, the operator holds the portable handle 5 by hand, wraps the wrapping cover 25 around the camellia oleifera flower to be pollinated, and then starts the micro pump 3. Then, with the mutual cooperation among the first guide pipe 15, the second guide pipe 72, the first connecting pipe 22, the second connecting pipe 23, the third connecting pipe 41, the connecting hose 43 and the atomizing nozzle 24, the pollen solution inside the pollen solution tank 12 can be pumped out and sprayed onto the camellia oleifera flower, so as to achieve the pollination operation of the camellia oleifera flower. During the pollination process of the camellia oleifera flower, under the action of the wrapping cover 25, the spraying space of the pollen solution can be restricted, and the waste caused by the influence of wind during the spraying process of the pollen solution can also be avoided; a3. During the spraying process of the pollen solution, when the spraying angle needs to be adjusted, the operator rotates the first worm 2. Then, with the cooperation of the first worm gear 410, the second rotating rod 49 is driven to rotate. Through the rotation of the second rotating rod 49, with the cooperation of the third transmission wheel 46, the fourth transmission wheel 48, the first rotating rod 47, the rotating plate 44 and the mounting block 42, the first connecting pipe 22, the second connecting pipe 23, the third connecting pipe 41, the atomizing nozzle 24 and the wrapping cover 25 can be driven to rotate around the two first rotating rods 47, so as to achieve the adjustment process of the spraying angle during the spraying process of the pollen solution, which is convenient for the operator to pollinate the camellia oleifera flowers at different positions; a4. When it is necessary to adjust the spraying distance, the operator can thread-mount multiple connecting pipes 22 between the second connecting pipe 23 and the third connecting pipe 41 to achieve the adjustment process of the spraying distance of the device, which is convenient for pollination operations on camellia oleifera at different heights. During the use of the device, by starting the small motor 21, the hollow rotating pipe 18 can be driven to rotate under the cooperation of the first transmission wheel 17 and the second transmission wheel 20. The rotation of the hollow rotating pipe 18 can drive the four stirring rods 71 to rotate under the cooperation of the first gear 16 and the second gear 74, thus achieving the stirring process of the pollen solution in the pollen solution tank 12 and ensuring the uniformity of the internal components of the pollen solution. a5. When the device needs to be charged after use, by pulling the L-shaped protective baffle 61 upward to rotate, the charging socket 13 can be exposed. At this time, the operator can charge the device through the charging socket 13. After charging, under the action of the second spring 812, the sliding plate 65 can be pushed downward to move. Then, under the cooperation of the hinge plate 64 and the second fixing rod 69, the L-shaped protective baffle 61 can be driven to rotate downward around the two third rotating rods 63 until the left end of the L-shaped protective baffle 61 overlaps with the right end of the charging socket 13, thus protecting the charging socket 13.

[0034] The above are only the preferred embodiments of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and refinements can be made, and these improvements and refinements should also be regarded as the protection scope of the present invention. The structures, devices, and operation methods not specifically described and explained in the present invention, unless otherwise specified and limited, are implemented according to the conventional means in the art.

Claims

1. A multifunctional camellia oil pollination device, comprising a housing (1), characterized in that: The left end of the housing (1) is provided with an adjustment mechanism (4), the left end of the adjustment mechanism (4) is threadedly connected to a connecting pipe (22) having a threaded connector at its right end, the connecting pipe (22) is threadedly connected to a connecting pipe (23) having another threaded connector at its right end through a threaded structure at its left end, the left end of the connecting pipe (23) is provided with an atomizing nozzle (24), the front and rear sides of the adjustment mechanism (4) are movably connected to the front and rear ends of the housing (1) respectively, the adjustment mechanism (4) is meshed with the worm (2) for transmission, the left side of the adjustment mechanism (4) is fixedly connected to one end of the guide pipe (15), and the other end of the guide pipe (15) is fixedly connected to the micro pump (3); The lower side of the micro pump (3) is fixedly connected to the upper end of the stirring mechanism (7), the upper side of the stirring mechanism (7) is fixedly connected to the lower end of the housing (1), the lower side of the stirring mechanism (7) is overlapped with the upper end of a pollen solution tank (12) having a sealing rubber ring at the upper end, the pollen solution tank (12) is arranged on a base mounting mechanism (8), the lower side of the base mounting mechanism (8) is plugged into an annular overlap plate (10) having two limiting holes therein, the right side of the base mounting mechanism (8) is matched with the tooth plate (9), and the upper end of the base mounting mechanism (8) is fixedly connected to the lower end of the housing (1); The right end of the shell (1) is provided with a charging socket (13), and the right end of the charging socket (13) is overlapped with a protective mechanism (6), the protective mechanism (6) is installed at the right end of the shell (1), the lower end of the shell (1) is movably connected to a hollow rotating tube (18), the hollow rotating tube (18) is sleeved with the upper side of the stirring mechanism (7), the lower end of the hollow rotating tube (18) is fixedly connected with a gear one (16), and the gear one (16) is meshed with the stirring mechanism (7) for transmission.

2. A multifunctional oil-tea camellia pollination device according to claim 1, characterized in that: The second connecting pipe (23) is provided with a wrapping cover (25), the upper end of the hollow rotating pipe (18) is fixedly connected to the first transmission wheel (17), the first transmission wheel (17) is connected to the second transmission wheel (20) through a transmission belt, the second transmission wheel (20) is fixedly connected to the output shaft of a small motor (21), the small motor (21) is fixedly connected to the bottom surface of the shell (1), the upper and lower ends of the shell (1) are respectively movably connected to the upper and lower sides of the worm gear (2), the upper end of the shell (1) is fixedly mounted with a micro pump (3), the shell (1) A portable handle (5) is fixedly connected to the upper end, the lower end of the shell (1) is fixedly connected to the upper end of the tooth plate (9), the front and rear ends of the shell (1) are both provided with dustproof and heat dissipation nets (19), the left end of the shell (1) is fixedly connected to the left side of the guide tube 1 (15), the annular lap plate (10) is fixedly connected to the lower end of the pollen solution tank (12), a bottom guide block (11) is provided on the inner bottom surface of the pollen solution tank (12), a storage battery (14) is provided at the right end of the shell (1), and a control panel (26) is provided at the front end of the shell (1).

3. A multifunctional oil-tea camellia pollination device according to claim 1, characterized in that: The adjusting mechanism (4) comprises a worm wheel 1 (410), wherein the worm wheel 1 (410) is meshed with the worm gear 1 (2) for transmission, the worm wheel 1 (410) is fixedly connected to a rotating rod 2 (49), the front and rear sides of the rotating rod 2 (49) are respectively movably connected to the front and rear ends of the housing (1), the front and rear ends of the rotating rod 2 (49) are both fixedly connected to a transmission wheel 4 (48), the two transmission wheels 4 (48) are respectively transmission-connected to two transmission wheels 3 (46) through two other transmission belts, the two transmission wheels 3 (46) are respectively fixedly connected to one end of the two rotating rods 1 (47), and the other ends of the two rotating rods 1 (47) are both fixedly connected There is a rotating plate (44), the left ends of the two rotating plates (44) are respectively fixedly connected to the front and rear ends of the mounting block (42), the mounting block (42) is fixedly connected to a connecting pipe three (41), the connecting pipe three (41) is threadedly connected to a connecting pipe one (22) with a threaded connector at the right end through a threaded structure provided at the left end, the right end of the connecting pipe three (41) is fixedly connected to one end of a connecting hose (43), the other end of the connecting hose (43) is fixedly connected to the left end of a guide pipe one (15), the two rotating rods one (47) are movably connected to a fixing plate one (45), the right ends of the two fixing plates one (45) are fixedly connected to the left end of the shell (1).

4. A multifunctional oil-tea camellia pollination device according to claim 1, characterized in that: The stirring mechanism (7) comprises a protective shell (73), the upper end of the protective shell (73) is fixedly connected to the lower end of the shell (1), the lower end of the protective shell (73) is fixedly connected to the second guide tube (72), the upper side of the second guide tube (72) is sleeved with the hollow rotating tube (18), the upper end of the second guide tube (72) is fixedly connected to the lower side of the micro pump (3), the lower end of the protective shell (73) is movably connected to the upper sides of four stirring rods (71), the upper ends of the four stirring rods (71) are fixedly connected to the second gear (74), the four second gears (74) are meshed with the first gear (16) for transmission, and the lower end of the protective shell (73) is overlapped with the upper end of the pollen solution tank (12) having a sealing rubber ring at the upper end.

5. The multifunctional oil-tea camellia pollination device according to claim 1, characterized in that: The protective mechanism (6) comprises two fixed plates (68), the left ends of the two fixed plates (68) are fixedly connected to the right end of the shell (1), the relatively close ends of the two fixed plates (68) are fixedly connected to the upper and lower ends of two fixed rods (66), the two fixed rods (66) are sleeved with springs (67), the two fixed rods (66) are slidably connected to a sliding plate (65) with two through holes therein, the right end of the sliding plate (65) is movably connected to two hinged plates (64), and the two The lower ends of the hinged plates (64) are movably connected to the two second fixing rods (69), respectively; the two second fixing rods (69) are fixedly connected to the right end of the L-shaped protective baffle (61); the left end of the L-shaped protective baffle (61) overlaps the right end of the charging socket (13); the front and rear ends of the L-shaped protective baffle (61) are fixedly connected to the rotating rod three (63); the two rotating rods three (63) are movably connected to the second fixing plate (62); the left ends of the two second fixing plates (62) are fixedly connected to the right end of the shell (1).

6. A multifunctional oil-tea camellia pollination device according to claim 1, characterized in that: The base mounting mechanism (8) comprises a support base (81), the support base (81) being overlapped with the lower end of the pollen solution tank (12) via a placement groove provided in the interior of the upper end thereof, the upper end of the support base (81) being fixedly connected to two limit rods (82), the two limit rods (82) being plugged into an annular overlap plate (10) having two limit holes provided in the interior thereof, and the right side of the support base (81) being fixedly connected to two mounting frames (85), the two mounting frames (85) being movably connected to two T-shaped limit rods (86) via the limit holes provided in the interior thereof.

7. A multifunctional oil-tea camellia pollination device according to claim 6, characterized in that: The upper ends of the two T-shaped limiting rods (86) are fixedly connected to the lower end of the housing (1); the relatively close ends of the two mounting frames (85) are fixedly connected to L-shaped plates (817); the two L-shaped plates (817) are movably connected to the front and rear sides of the worm gear 2 (810), respectively; a gear 3 (816) is fixedly connected to the middle position of the worm gear 2 (810); the gear 3 (816) is matched with the toothed plate (9); the worm gear 2 (810) is meshed with the two worm gears 2 (88) for transmission; the two worm gears 2 (88) are fixedly connected to one end of the two rotating rods 4 (815), respectively.

8. A multifunctional oil-tea camellia pollination device according to claim 7, characterized in that: The other ends of the two rotating rods (815) are fixedly connected to cams (87), the relatively close ends of the two cams (87) are respectively overlapped with the relatively far ends of the two vertical plates (813), the two vertical plates (813) are slidably connected to the two fixed rods (811) through two circular holes opened therein, the two fixed rods (811) are sleeved with two springs (812), the front and rear ends of the two fixed rods (811) are respectively fixedly connected to the two L-shaped frames (89), and the relatively close ends of the two L-shaped frames (89) are respectively fixedly connected to the relatively far ends of the two mounting frames (85).

9. A multifunctional oil-tea camellia pollination device according to claim 8, characterized in that: The relatively far ends of the two vertical plates (813) are fixedly connected to connecting rods (84), the left sides of the two connecting rods (84) are fixedly connected to arc-shaped clamping plates (83), the relatively close ends of the two arc-shaped clamping plates (83) are respectively overlapped with the front and rear ends of the pollen solution tank (12), the two rotating rods (815) are respectively movably connected to the two mounting frames (85), the upper end of the support base (81) is fixedly connected to two electric hydraulic rods (814), and the upper ends of the two electric hydraulic rods (814) are fixedly connected to the lower end of the shell (1).

10. The method for using the multifunctional camellia oleifera pollination device according to claim 9, comprising the following steps: a1. When the device is used to perform pollination on camellia oleifera, the two electric hydraulic rods (814) are first started to drive the support base (81) to move downward a certain distance. In the process of driving the support base (81) to move downward, the tooth plate (9) and the gear three (816) begin to mesh and can drive the worm gear two (810) to rotate. The rotation of the worm gear two (810) can drive the two arc-shaped clamping plates in cooperation with the provided worm wheel two (88), the rotating rod four (815), the cam (87), the spring two (812), the vertical plate (813), the fixed rod three (811) and the connecting rod (84). (83) are away from each other, so that the pollen solution tank (12) can be easily removed from the support base (81), and the prepared pollen solution can be injected into the pollen solution tank (12). After the pollen solution is injected, the pollen solution tank (12) is placed on the upper end of the support base (81) through the cooperation of the annular overlap plate (10) and the limit rod (82), and then the two electric hydraulic rods (814) are started again to drive the support base (81) to move upward until the lower end of the pollen solution tank (12) overlaps the lower end of the protective shell (73), and the pollen solution tank (12) can be fixed; a2. After the pollen solution tank (12) is fixed again, the operator holds the portable handle (5) and wraps the camellia to be pollinated with the wrapping cover (25), then starts the micro pump (3), and then the pollen solution in the pollen solution tank (12) is extracted and sprayed onto the camellia with the cooperation of the guide tube 1 (15), the guide tube 2 (72), the connecting tube 1 (22), the connecting tube 2 (23), the connecting tube 3 (41), the connecting hose (43) and the atomizing nozzle (24), thereby achieving the pollination operation of the camellia. In the process of pollinating the camellia, the space for spraying the pollen solution can be limited under the action of the wrapping cover (25), and the waste caused by the influence of wind during the spraying of the pollen solution can be avoided; a3. When the spraying angle needs to be adjusted during the spraying of the pollen solution, the operator rotates the worm gear 1 (2), thereby driving the rotating rod 2 (49) to rotate in cooperation with the worm gear 1 (410). The rotating rod 2 (49) can drive the connecting pipe 1 (22), the connecting pipe 2 (23), the connecting pipe 3 (41), the atomizing nozzle (24) and the wrapping cover (25) to rotate around the two rotating rods 1 (47) in cooperation with the transmission wheel 3 (47), the transmission wheel 4 (48), the rotating rod 1 (47), the rotating plate (44) and the mounting block (42), thereby achieving the process of adjusting the spraying angle during the spraying of the pollen solution, and facilitating the operator to perform pollination operations on the oil-tea camellia flowers at different positions; a4. When the spraying distance needs to be adjusted, the operator can adjust the spraying distance of the device by threading a plurality of connecting tubes 1 (22) between the connecting tube 2 (23) and the connecting tube 3 (41), thereby facilitating the pollination operation of camellia oleifera at different heights. During the use of the device, the small motor (21) is started, and the hollow rotating tube (18) is driven to rotate in cooperation with the transmission wheel 1 (17) and the transmission wheel 2 (20). The rotation of the hollow rotating tube (18) is driven to rotate in cooperation with the gear 1 (16) and the gear 2 (74), thereby achieving the stirring process of the pollen solution inside the pollen solution tank (12), thereby ensuring the uniformity of the internal components of the pollen solution; a5. When the device needs to be charged after use, the L-shaped protective baffle (61) is pulled upward to rotate, so that the charging socket (13) is exposed. At this time, the operator can charge the device through the charging socket (13). When charging is completed, the sliding plate (65) can be pushed downward by the action of the second spring (812), and then the hinged plate (64) and the second fixed rod (69) can drive the L-shaped protective baffle (61) to rotate downward around the two rotating rods (63) until the left end of the L-shaped protective baffle (61) overlaps the right end of the charging socket (13), and the charging socket (13) can be protected.