A fertilizing device for promoting sprouting of regenerated rice
By designing a regenerated rice sprout-promoting fertilization device, a servo motor is used to drive the stirring blades and spiral auger to achieve automatic stirring and discharging of fertilizers, which solves the problem that traditional fertilization devices require multiple processes and improves fertilization efficiency and fertilizer utilization rate.
Patent Information
- Application Number
- CN202211243784.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-11
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2042-10-11
AI Technical Summary
Traditional fertilizing devices require multiple steps to mix and apply fertilizer, which increases time costs.
A regenerated rice germination promotion and fertilization device was designed, which included a stirring mechanism, a discharging mechanism, a reversing mechanism, a spreading mechanism, a blocking mechanism and a locking mechanism. The device was driven by a servo motor to drive the rotating shaft and stirring blades for stirring and mixing, and automatic discharging was achieved by a spiral auger and a discharging pipe. The device was then used for uniform fertilization through the spreading blades.
The fertilizer can be stirred and applied at the same time, which improves the fertilization efficiency, reduces the time cost, ensures the uniform spreading of the fertilizer, and reduces the waste of fertilizer.
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Figure CN115517060B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of auxiliary planting equipment, and in particular to a regenerated rice sprout-promoting fertilization device. Background Art
[0002] Regenerated rice can be harvested twice after being sown once. When the regenerated rice grows, it needs to be fertilized. Traditional fertilizing devices mostly require people to first stir and mix the fertilizer with the help of a stirring piece. After stirring and mixing, the fertilizer is taken out and then poured into the fertilizing device. The fertilizer is then sprinkled using the fertilizing device. This requires multiple steps to complete the fertilizing operation, and it is difficult to achieve the effect of stirring the fertilizer while fertilizing, which increases the time cost.
[0003] Therefore, a regenerated rice sprout-promoting fertilizing device that can stir and fertilize fertilizer at the same time is now developed. Summary of the Invention
[0004] In order to overcome the disadvantage that the above device is difficult to achieve the effect of stirring fertilizer while applying, which will increase the time cost, the technical problem of the present invention is to provide a regenerated rice sprout promotion and fertilization device that can stir fertilizer while applying it.
[0005] The technical implementation scheme of the present invention is: a regenerated rice germination promotion and fertilization device, including a first mounting frame, a storage part, a material guide and diverter, a handle, a stirring mechanism and a discharging mechanism. The upper side of the first mounting frame is connected to the storage part, the front side of the first mounting frame is connected to the material guide and diverter, the material guide and diverter is connected to the front side of the storage part, the rear side of the first mounting frame is connected to the handle, the material guide and diverter is provided with a stirring mechanism, and the material guide and diverter is provided with a discharging mechanism. Fertilizer is added into the storage part, and then the fertilizer is stirred and mixed by the stirring mechanism, and then the fertilizer is sprinkled out for fertilization through the discharging mechanism.
[0006] In a preferred embodiment of the present invention, the stirring mechanism includes a rotating shaft, a stirring blade, a ring gear, a first spur gear, a fixed frame, a rotating shaft, a second spur gear, a transmission assembly and a servo motor. The rotating shaft is rotatably connected in the storage member, the front side of the rotating shaft passes through the front side of the material guide diverter, the rotating shaft is connected to the stirring blade, the stirring blade contacts the inner wall of the storage member, the front part of the rotating shaft is connected to the ring gear, the ring gear is located in front of the material guide diverter, the front side of the rotating shaft is connected to the first spur gear, the front side of the material guide diverter is bolted to the fixed frame, the upper part of the fixed frame is rotatably connected to the rotating shaft, the rear part of the rotating shaft is slidably connected to the second spur gear, the second spur gear and the ring gear are meshed with each other, the front part of the first mounting frame is connected to the servo motor, the servo motor is located below the storage member, the servo motor output shaft is rotatably connected to the fixed frame, the front part of the rotating shaft is connected to the transmission assembly, and the lower part of the transmission assembly is connected to the servo motor output shaft, the servo motor drives the rotating shaft to rotate through the transmission assembly, and then drives the second spur gear and the ring gear to rotate, and then drives the rotating shaft and the stirring blade to rotate, so as to stir and mix the fertilizer.
[0007] In a preferred embodiment of the present invention, the discharging mechanism includes a spiral auger, a guide member, a discharging pipe, a first pulley assembly and a bevel gear. The left and right parts of the guide diverter are connected to the guide member, the inside of the guide member is rotatably connected to the spiral auger, and the guide member is rotatably connected to the discharging pipe. The first pulley assembly is connected between the lower side of the two spiral augers and the fixed frame, the upper side of the first pulley on the lower side is connected to the bevel gear, and the servo motor output shaft is also connected to the bevel gear. The two bevel gears are engaged with each other, and the rotation of the bevel gear drives the spiral auger to rotate through the first pulley assembly to discharge the fertilizer.
[0008] In a preferred embodiment of the present invention, it also includes a reversing mechanism for adjusting the rotation direction of the stirring blade, the reversing mechanism includes a first guide member, a first spring, a first sliding member, a first connecting member and a rotating pushing member, the first guide member is bolted to the upper side of the material guide diverter, the first guide member is slidingly connected to the first sliding member, the front side of the first sliding member is connected to the first spring, the front side of the first spring is connected to the first guide member, the first spring is sleeved on the first guide, the lower part of the first sliding member is rotatably connected to the second spur gear, the upper side of the first slide is bolted to the first connecting member, the front part of the discharge pipe is connected to the rotating pushing member, the rotating pushing member is rotatably and slidably connected to the first connecting member, when the discharge pipe rotates and drives the rotating pushing member to rotate, it will push the first connecting member to move forward, and then drive the first sliding member and the second spur gear to move forward, meshing the first spur gear with the second spur gear to adjust the rotation direction of the stirring blade.
[0009] In a preferred embodiment of the present invention, a spreading mechanism for dispersing and scattering the fertilizer is further included. The spreading mechanism includes a second mounting frame, a rotating member, a spreading blade, a motor and a second pulley assembly. The rear portion of the discharge pipe is connected to the second mounting frame, the rear side of the upper portion of the second mounting frame is connected to the motor, the lower side of the rear portion of the discharge pipe is rotatably connected to the rotating member, the second pulley assembly is connected to the motor output shaft, the rear portion of the second pulley assembly is connected to the adjacent rotating member, and the lower side of the rotating member is connected to the spreading blade. The motor drives the rotating member and the spreading blade to rotate through the second pulley assembly to disperse and scatter the fertilizer.
[0010] In a preferred embodiment of the present invention, a material blocking mechanism for blocking fertilizer is also included, and the material blocking mechanism includes a rotating pressing member, a second sliding member and a material blocking member. The front lower part of the discharge pipe is connected to the rotating pressing member, and the left and right sides of the upper part of the material guide diverter are slidably connected to the second sliding member. The second sliding members are slidably connected to the adjacent rotating pressing members, and the second sliding members pass through the upper side of the material guide diverter. The lower side of the second sliding member is bolted to the material blocking member. The rotation of the discharge pipe drives the rotating pressing member to rotate, driving the second sliding member and the material blocking member to move upward, and then the fertilizer will enter the material guide member.
[0011] In a preferred embodiment of the present invention, the groove on the rotary pressing member is in a threaded shape. During the rotation of the rotary pressing member, the second sliding member moves upward under the action of the threaded groove.
[0012] In a preferred embodiment of the present invention, a locking mechanism for clamping and limiting the discharge pipe is also included. The locking mechanism includes a second guide, a sliding locking member, a second spring and a second connecting member. The left and right sides of the material guide and diverter are connected to the second guide, and the sliding locking member is slidably connected to the second guide. The upper part of the sliding locking member is connected to the second spring, and the lower side of the second spring is connected to the upper side of the second guide. The second spring is sleeved on the sliding locking member, and the front part of the discharge pipe is connected to the second connecting member. The second connecting member will contact the sliding locking member when it rotates, and then the sliding locking member is used to clamp the second connecting member, thereby clamping and limiting the discharge pipe.
[0013] The present invention has the following advantages: the present invention can stir and mix the fertilizer by rotating the stirring blade, and then automatically discharge the stirred fertilizer by rotating the spiral auger, so that people can fertilize the regenerated rice, thereby improving the fertilization efficiency; when the discharge pipe rotates, the first sliding part will automatically move to the front side, so that the rotation direction of the stirring blade is automatically adjusted, thereby improving the utilization rate of the fertilizer and preventing the fertilizer from accumulating behind the storage part; the fertilizer can be dispersed and sprinkled by the rotation of the sowing blade, thereby making the fertilizer evenly sown. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention.
[0015] Figure 2 This is a schematic diagram of the first three-dimensional structure of the stirring mechanism of the present invention.
[0016] Figure 3 This is a schematic diagram of the second three-dimensional structure of the stirring mechanism of the present invention.
[0017] Figure 4 It is a partial three-dimensional structural cross-sectional view of the stirring mechanism of the present invention.
[0018] Figure 5 It is a partial three-dimensional structural schematic diagram of the stirring mechanism of the present invention.
[0019] Figure 6 It is a schematic diagram of the three-dimensional structure of the discharging mechanism of the present invention.
[0020] Figure 7 It is a partial three-dimensional structural sectional view of the discharging mechanism of the present invention.
[0021] Figure 8 It is a schematic diagram of the three-dimensional structure of the reversing mechanism of the present invention.
[0022] Figure 9 It is a schematic diagram of the three-dimensional structure of the spreading mechanism of the present invention.
[0023] Figure 10 It is a partial three-dimensional structural sectional view of the spreading mechanism of the present invention.
[0024] Figure 11 It is a three-dimensional structural sectional view of the material blocking mechanism of the present invention.
[0025] Figure 12 It is a schematic diagram of the three-dimensional structure of the locking mechanism of the present invention.
[0026] The above drawings include the following reference numerals: 1. first mounting frame, 2. reserve member, 3. material guide and diverter, 4. handle, 5. stirring mechanism, 50. rotating shaft, 51. stirring blade, 52. gear ring, 53. first spur gear, 54. fixing frame, 55. rotating shaft, 56. second spur gear, 57. transmission assembly, 58. servo motor, 6. discharging mechanism, 60. spiral auger, 61. material guide, 62. discharging pipe, 63. first pulley assembly, 64. bevel gear, 7. reversing mechanism, 70. First guide member, 71. First spring, 72. First sliding member, 73. First connecting member, 74. Rotating pushing member, 8. Spreading mechanism, 80. Second mounting frame, 81. Rotating member, 82. Spreading blade, 83. Motor, 84. Second pulley assembly, 9. Material blocking mechanism, 90. Rotating pressing member, 91. Second sliding member, 92. Material blocking member, 10. Positioning mechanism, 101. Second guide member, 102. Sliding positioning member, 103. Second spring, 104. Second connecting member. DETAILED DESCRIPTION
[0027] First of all, it should be noted that in the various described embodiments, identical components are provided with identical reference numerals or identical component names, wherein the disclosure contained throughout the entire description can be transferred to the same components having the same reference numerals or identical component names. Positional designations selected in the description, such as top, bottom, lateral, etc., also refer to the directly described and illustrated figures and are transferred to the new position in the event of a change in position.
[0028] A fertilizing device for promoting sprouting of regenerated rice, such as Figure 1 As shown, it includes a first mounting frame 1, a storage part 2, a material guide and diverter part 3, a handle 4, a stirring mechanism 5 and a discharging mechanism 6. The upper side of the first mounting frame 1 is connected to the storage part 2 that can be used to store fertilizer, the front side of the first mounting frame 1 is welded with a material guide and diverter part 3, the material guide and diverter part 3 is connected to the front side of the storage part 2, the rear side of the first mounting frame 1 is connected to a handle 4 that can facilitate people to push the device, the material guide and diverter part 3 is provided with a stirring mechanism 5 for stirring the fertilizer, and the material guide and diverter part 3 is provided with a discharging mechanism 6 for sprinkling the fertilizer.
[0029] like Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 and Figure 5As shown, the stirring mechanism 5 includes a rotating shaft 50, a stirring blade 51, a ring gear 52, a first straight gear 53, a fixing frame 54, a rotating shaft 55, a second straight gear 56, a transmission assembly 57 and a servo motor 58. The storage part 2 is rotatably connected to the rotating shaft 50, and the front side of the rotating shaft 50 passes through the front side of the material guide diverter 3. The rotating shaft 50 is connected to the stirring blade 51, and the stirring blade 51 contacts the inner wall of the storage part 2. The stirring blade 51 rotates to stir and mix the fertilizer. The front part of the rotating shaft 50 is connected to the ring gear 52, and the ring gear 52 is located in front of the material guide diverter 3. The front side of the rotating shaft 50 is connected to the first straight gear 53. The front side of the material guide diverter 3 is connected to the fixing frame 54 by bolts. The upper part of the fixed frame 54 is rotatably connected to the rotating shaft 55, and the rear part of the rotating shaft 55 is slidably connected to the second spur gear 56. The second spur gear 56 is meshed with the ring gear 52. The front part of the first mounting frame 1 is connected to the servo motor 58, and the servo motor 58 is located below the reserve part 2. The output shaft of the servo motor 58 is rotatably connected to the fixed frame 54, and the front part of the rotating shaft 55 is connected to the transmission assembly 57. The lower part of the transmission assembly 57 is connected to the output shaft of the servo motor 58. The transmission assembly 57 consists of two transmission wheels and a transmission belt. The output shaft of the servo motor 58 is connected to a transmission wheel, and the rotating shaft 55 is also connected to a transmission wheel. A transmission belt is wound around the two transmission wheels.
[0030] like Figure 1 、 Figure 6 and Figure 7 As shown, the discharging mechanism 6 includes a spiral auger 60, a guide member 61, a discharge pipe 62, a first pulley assembly 63 and a bevel gear 64. The left and right parts of the guide diverter 3 are connected to the guide member 61. The spiral auger 60 is rotatably connected inside the guide member 61. The discharge pipe 62 that can sprinkle fertilizer is rotatably connected to the guide member 61. The first pulley assembly 63 is connected between the lower side of the two spiral augers 60 and the fixed frame 54. The first pulley assembly 63 consists of three first pulleys and a first belt. The lower side of the spiral auger 60 is connected to the first pulley, and the lower part of the fixed frame 54 is also rotatably connected to the first pulley. The first belt is wound between the three first pulleys, and the upper side of the lower first pulley is connected to the bevel gear 64. The bevel gear 64 is also connected to the output shaft of the servo motor 58, and the two bevel gears 64 are meshed with each other.
[0031] When people need to fertilize the regenerated rice to promote germination, this device can be used to achieve this. First, people open the lid on the storage part 2, and then people pour the required multiple fertilizers into the storage part 2. After pouring, people reset the lid and cover and seal the storage part 2. Then people push the device into the rice field through the handle 4. Then people rotate and unfold the discharge pipe 62 to the side away from each other. Then people turn on the servo motor 58. The output shaft of the servo motor 58 rotates through the transmission component 57 to drive the rotating shaft 55 to rotate. The rotation of the rotating shaft 55 drives the second spur gear 56 to rotate, and then drives the ring gear 52 to rotate. The rotation of the ring gear 52 drives the rotating shaft 50 and the stirring blade 51 to rotate. The rotation of the stirring blade 51 can stir and mix the multiple fertilizers in the storage part 2, and the stirred fertilizer will enter the guide The material flows into the material diverter 3 and then enters the material guide 61. At the same time, the output shaft of the servo motor 58 rotates to drive the bevel gear 64 to rotate. The rotation of the bevel gear 64 drives the first pulley assembly 63 to rotate, and then drives the spiral auger 60 to rotate. The rotation of the spiral auger 60 can transport the fertilizer in the material guide 61 to the upper side, and then the fertilizer is sprinkled out through the discharge pipe 62, so that the regenerated rice paddy field can be fertilized. After the fertilization is completed, people turn off the servo motor 58, and then people rotate the discharge pipe 62 to the side close to each other to reset and retract it. Repeat the above operation to rotate the stirring blade 51 to stir and mix the fertilizer, and then rotate the spiral auger 60 to automatically discharge the stirred fertilizer, so that people can fertilize the regenerated rice, so that the effect of stirring and fertilizing can be achieved.
[0032] like Figure 1 and Figure 8 As shown, it also includes a reversing mechanism 7 for adjusting the rotation direction of the stirring blade 51. The reversing mechanism 7 includes a first guide member 70, a first spring 71, a first sliding member 72, a first connecting member 73 and a rotating push member 74. The upper side of the material guide and diverter member 3 is connected to the first guide member 70 by bolts, and the first sliding member 72 is slidably connected to the first guide member 70. The front side of the first sliding member 72 is connected to the first spring 71, and the front side of the first spring 71 is connected to the first guide member 70. The first spring 71 is sleeved on the first guide member 70. The lower part of the first sliding member 72 is rotatably connected to the second spur gear 56, and the upper side of the first sliding member 72 is connected to the first connecting member 73 by bolts. The front part of the discharge pipe 62 is connected to the rotating push member 74, and the rotating push members 74 are rotatably and slidably connected to the first connecting member 73.
[0033] When people need to adjust the rotation direction of the stirring blade 51, first, the discharge pipe 62 rotates to the side away from each other, which will drive the rotating pusher 74 to rotate. The rotation of the rotating pusher 74 will push the first connecting member 73 and the first sliding member 72 to move forward. At this time, the first spring 71 is compressed, and the first sliding member 72 moves forward, driving the second spur gear 56 to move forward, so that the second spur gear 56 and the first spur gear 53 are meshed with each other. Then the rotation of the second spur gear 56 will cause the first spur gear 53 to rotate in the opposite direction, thereby driving the rotating shaft 50 and the stirring blade 51 to rotate in the opposite direction, stirring the fertilizer in the opposite direction, so that the fertilizer accumulated at the rear position of the storage part 2 moves forward, which can reduce The waste rate of small fertilizer is reduced. When fertilization is completed and when the discharge pipe 62 drives the rotating pusher 74 to rotate and reset to the side close to each other, the rotating pusher 74 will release the first connecting member 73, and then the first sliding member 72 moves backward and resets under the action of the first spring 71. The first sliding member 72 moves backward and drives the first connecting member 73 and the second spur gear 56 to move backward and reset, so that the second spur gear 56 is separated from the first spur gear 53. Repeating the above operation through the rotation of the discharge pipe 62 will automatically move the first sliding member 72 to the front side, so that the rotation direction of the stirring blade 51 is automatically adjusted, which can improve the utilization rate of the fertilizer and prevent the fertilizer from accumulating at the rear position of the storage part 2.
[0034] like Figure 1 、 Figure 9 and Figure 10 As shown, it also includes a spreading mechanism 8 for dispersing and scattering fertilizer, and the spreading mechanism 8 includes a second mounting frame 80, a rotating member 81, a spreading blade 82, a motor 83 and a second pulley assembly 84. The rear part of the discharge pipe 62 is connected to the second mounting frame 80, and the rear side of the upper part of the second mounting frame 80 is connected to the motor 83. The lower side of the rear of the discharge pipe 62 is rotatably connected to the rotating member 81, and the second pulley assembly 84 is connected to the output shaft of the motor 83. The rear part of the second pulley assembly 84 is connected to the adjacent rotating member 81. The second pulley assembly 84 consists of two second pulleys and a second belt. The output shaft of the motor 83 is connected to the second pulley, and the rotating member 81 is also connected to the second pulley. A second belt is wound around the two adjacent second pulleys. The lower side of the rotating member 81 is connected to the spreading blade 82, and the spreading blade 82 can disperse and scatter the fertilizer.
[0035] When people need to disperse and scatter fertilizer, first, people turn on the motor 83, and the output shaft of the motor 83 rotates to drive the rotating member 81 to rotate through the second pulley assembly 84. The rotation of the rotating member 81 drives the sowing blade 82 to rotate, and the fertilizer in the discharge pipe 62 will fall onto the sowing blade 82. Then the sowing blade 82 rotates to disperse and scatter the fertilizer, so that the fertilizer can be spread more evenly. When the fertilizer is spread, people can turn off the motor 83 and repeat the above operation to rotate the sowing blade 82 to disperse and scatter the fertilizer, so that the fertilizer can be spread evenly.
[0036] like Figure 1 and Figure 11 As shown, it also includes a blocking mechanism 9 for blocking fertilizer, and the blocking mechanism 9 includes a rotating pressing member 90, a second sliding member 91 and a blocking member 92. The front lower part of the discharge pipe 62 is connected to the rotating pressing member 90, and the left and right sides of the upper part of the material guide and diverter 3 are slidingly connected to the second sliding members 91. The second sliding members 91 are slidingly connected to the adjacent rotating pressing members 90. The groove on the rotating pressing member 90 is threaded. During the rotation of the rotating pressing member 90, the second sliding member 91 will move upward under the action of the thread groove. The second sliding members 91 pass through the upper side of the material guide and diverter 3, and the lower side of the second sliding member 91 is connected to the blocking member 92 by bolts. The blocking member 92 can block the material guide member 61.
[0037] The material stopper 92 is moved upwards so that the guide member 61 is opened, and the fertilizer application operation can be carried out.
[0038] like Figure 1 and Figure 12As shown, it also includes a locking mechanism 10 for locking and limiting the discharge pipe 62. The locking mechanism 10 includes a second guide member 101, a sliding locking member 102, a second spring 103 and a second connecting member 104. The left and right sides of the material guide and diverter member 3 are connected to the second guide member 101. The sliding locking member 102 is slidably connected to the second guide member 101. The upper part of the sliding locking member 102 is connected to the second spring 103. The lower side of the second spring 103 is connected to the upper side of the second guide member 101. The second spring 103 is sleeved on the sliding locking member 102. The front part of the discharge pipe 62 is connected to the second connecting member 104.
[0039] When people need to clamp the discharge pipe 62, first, when the discharge pipe 62 rotates to the side away from each other, it will drive the second connecting member 104 to rotate to the side away from each other. When the second connecting member 104 contacts the sliding clamping member 102, the second connecting member 104 will push the sliding clamping member 102 to move downward. At this time, the second spring 103 is compressed. Then, when the second connecting member 104 is separated from the sliding clamping member 102, the sliding clamping member 102 moves upward under the action of the second spring 103, and the sliding clamping member 102 can clamp the second connecting member 104, thereby blocking the discharge pipe 62 and preventing the discharge pipe 62 from being clamped and limited. 2 automatically rotates, and then the fertilizing operation can be carried out. After the fertilizing is completed, people move the sliding clamping member 102 downward, at this time the second spring 103 is compressed, and at this time the second connecting member 104 is released, and then people rotate the discharge pipe 62 and the second connecting member 104 to the side close to each other to reset, and then people release the sliding clamping member 102, and then the sliding clamping member 102 moves upward under the action of the second spring 103 to reset, repeating the above operation. By sliding the clamping member 102, the second connecting member 104 can be clamped, and then the discharge pipe 62 can be clamped, thereby preventing the discharge pipe 62 from automatically rotating and affecting the fertilizing operation.
[0040] The above embodiments are intended only to illustrate the technical concepts and features of the present invention. Their purpose is to enable those skilled in the art to understand the contents of the present invention and implement them accordingly. They are not intended to limit the scope of protection of the present invention. Any equivalent changes or modifications made in accordance with the spirit of the present invention are intended to be covered by the scope of protection of the present invention.
Claims
1. A device for promoting sprouting and fertilizing regenerated rice, characterized by: The utility model comprises a first mounting frame, a storage member, a material guide and diverter member, a handle, a stirring mechanism and a discharging mechanism. The upper side of the first mounting frame is connected to the storage member, the front side of the first mounting frame is connected to the material guide and diverter member, the material guide and diverter member is communicated with the front side of the storage member, the rear side of the first mounting frame is connected to the handle, the material guide and diverter member is provided with a stirring mechanism, and the material guide and diverter member is provided with a discharging mechanism. Fertilizer is added into the storage member, and then the stirring mechanism is used to stir and mix the fertilizer, and then the fertilizer is sprinkled out for fertilization through the discharging mechanism. The stirring mechanism includes a rotating shaft, a stirring blade, a gear ring, a first straight gear, a fixed frame, a rotating shaft, a second straight gear, a transmission assembly and a servo motor, the storage part is rotatably connected with the rotating shaft, the front side of the rotating shaft passes through the front side of the material guide diverter, the rotating shaft is connected to the stirring blade, the stirring blade contacts the inner wall of the storage part, the front side of the rotating shaft is connected to the gear ring, the gear ring is located in the front position of the material guide diverter, the front side of the rotating shaft is connected to the first straight gear, the front side of the material guide diverter is bolted to the fixed frame, the upper part of the fixed frame is rotatably connected to the rotating shaft, the rear part of the rotating shaft is slidably connected to the second spur gear, the second spur gear and the gear ring are meshed with each other, the front of the first mounting frame is connected to the servo motor, the servo motor is located below the storage part, the servo motor output shaft is rotatably connected to the fixed frame, the front side of the rotating shaft is connected to the transmission assembly, the lower part of the transmission assembly is connected to the servo motor output shaft, the servo motor drives the rotating shaft to rotate through the transmission assembly, and then drives the second spur gear and the gear ring to rotate, and then drives the rotating shaft and the stirring blade to rotate, so as to stir and mix the fertilizer; The cam is secured to the upper portion of the drive shaft and is secured to a location where the cam is secured to the lower portion of the drive shaft, the cam being secured to the lower portion of the drive shaft when the cam is secured to the lower portion of the drive shaft.
2. The regenerated rice sprout-promoting fertilization device according to claim 1, characterized in that: The discharging mechanism includes a spiral auger, a guide piece, a discharging pipe, a first pulley assembly and a bevel gear. The left and right parts of the guide diverter are connected to the guide piece. The inside of the guide piece is rotatably connected to the spiral auger, and the guide piece is rotatably connected to the discharging pipe. The first pulley assembly is connected between the lower side of the two spiral augers and the fixed frame. The upper side of the first pulley on the lower side is connected to the bevel gear, and the bevel gear is also connected to the output shaft of the servo motor. The two bevel gears are meshed with each other, and the rotation of the bevel gear drives the spiral auger to rotate through the first pulley assembly to discharge the fertilizer.
3. The device for promoting sprouting and fertilizing regenerated rice according to claim 2, characterized in that: The dispersing mechanism further comprises a second mounting frame, a rotating member, a spreading blade, a motor and a second pulley assembly. The rear portion of the discharge pipe is connected to the second mounting frame, the rear side of the upper portion of the second mounting frame is connected to the motor, the lower side of the rear portion of the discharge pipe is rotatably connected to the rotating member, the second pulley assembly is connected to the motor output shaft, the rear portion of the second pulley assembly is connected to the adjacent rotating member, and the lower side of the rotating member is connected to the spreading blade. The motor drives the rotating member and the spreading blade to rotate through the second pulley assembly to disperse and scatter the fertilizer.
4. The device for promoting sprouting and fertilizing regenerated rice according to claim 3, characterized in that: The material-blocking mechanism is further provided with a rotating pressing member, a second sliding member and a material-blocking member. The front lower portion of the discharge pipe is connected to the rotating pressing member, and the left and right sides of the upper portion of the material guide and diverter are slidably connected to the second sliding member. The second sliding member is slidably connected to the adjacent rotating pressing member. The second sliding member passes through the upper side of the material guide and diverter, and the lower side of the second sliding member is bolted to the material-blocking member. The rotation of the discharge pipe drives the rotating pressing member to rotate, driving the second sliding member and the material-blocking member to move upward, and then the fertilizer enters the material guide member.
5. The device for promoting sprouting and fertilizing regenerated rice according to claim 4, characterized in that: The groove on the rotating pressing member is in a thread shape. During the rotation of the rotating pressing member, the second sliding member will move upward under the action of the thread groove.
6. The regenerated rice sprout-promoting fertilization device according to claim 5, characterized in that: The cam is secured to the upper edge of the second guide frame and is secured to the lower edge of the second guide frame by a spring. The cam is secured to the lower edge of the second guide frame by a spring. The cam is secured to the lower edge of the second guide frame by a spring. The cam is secured to the lower edge of the second guide frame by a spring.
Citation Information
Patent Citations
Ratooning rice regeneration season bud promoting fertilizer applying equipment
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