Operation state prompting device of pond-digging fertilizer applicator and pond-digging fertilizer applicator

By introducing an operation status indicator device into the pond fertilizer, the linkage between the transmission components and the baffle reflects the blade height, solving the problem of difficult blade position observation and improving the safety and work efficiency of the equipment.

CN223816451UActive Publication Date: 2026-01-23HUNAN TOBACCO CO SHAOYANG CO
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Patent Information

Application Number
CN202520170807.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-25
Publication Date
2026-01-23
Estimated Expiration
2035-01-25

AI Technical Summary

Technical Problem

In existing pond-digging and fertilizing machines, the working height of the pond-digging blades is not easily observed and judged by the operator, which may result in the blades still being in working condition after the equipment is stopped, causing damage to the soil ridges or the blades.

Method used

Design an operation status indication device that controls the circular motion of the drilling tool through a transmission component, causing the baffle to rise and fall within a specific range, and the indication component to rise and fall accordingly, reflecting the working position of the tool and providing a visual height indication.

Benefits of technology

It enables precise monitoring of the working height of the digging cutter, preventing the cutter from remaining in operation when the machine is stopped, reducing damage to the soil ridges and cutter, and improving the safety and stability of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an operation state prompting device of a pond-digging fertilizer applicator and the pond-digging fertilizer applicator. The operation state prompting device comprises a prompting assembly, a pond-digging assembly and a working platform, the prompting assembly comprises a prompting piece and a baffle, the prompting piece is connected with the baffle, and the prompting piece is arranged on an upper panel of the working platform in a penetrating mode; the pond digging assembly comprises a transmission part and a pond digging cutter, the transmission part is movably connected with the working platform and is in transmission connection with the pond digging cutter, the transmission part is used for controlling the pond digging cutter to do circular motion, and in the circular motion process, the transmission part abuts against the baffle in the first interval and is used for pushing the baffle to do lifting motion. According to the pond-digging fertilizer applicator, the pond-digging cutter in the pond-digging fertilizer applicator performs circular motion and realizes operation by utilizing the transmission part, and is propped against the baffle in the prompting assembly in the first interval in the operation process to drive the prompting part to lift, so that the height of the working position of the pond-digging cutter is reflected according to the lifting position of the prompting part; the ridge and even the cutter are prevented from being damaged due to the fact that the digging cutter is still at the working height during shutdown.
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Description

TECHNICAL FIELD

[0001] The utility model relates to agricultural machinery field, especially a kind of operating state prompt device of ponding fertilizer distributor and ponding fertilizer distributor. BACKGROUND

[0002] Ponding fertilizer distributor is the mechanical equipment commonly used in modern agriculture, mainly used for field fertilization operation, and the land is processed by ponding cutter to facilitate fertilization or other operations. However, there is a significant problem in the actual use of the existing ponding fertilizer distributor: the working height of the ponding cutter is not easy to be accurately observed and judged by the operator. Since the ponding cutter moves up and down frequently during work, and in most cases below the ground, the operator is difficult to accurately know the position of the cutter when away from the working area. This is particularly prominent after the equipment is stopped, especially when the operation is over or the machine breaks down, the cutter may still stay at the working height, which may cause the ridge to be damaged, and even damage the cutter. SUMMARY

[0003] The technical problem to be solved by the utility model is to provide an operating state prompt device of ponding fertilizer distributor and ponding fertilizer distributor, which solves the problem of inconvenient observation of the position of the cutter of the ponding fertilizer distributor.

[0004] In order to solve the above technical problems, the utility model adopts the technical scheme that:

[0005] An operating state prompt device of ponding fertilizer distributor, comprising a prompt assembly, a ponding assembly and a working platform;

[0006] The prompt assembly comprises a prompt piece and a baffle, the prompt piece and the baffle are connected, and the prompt piece is provided on the upper panel of the working platform.

[0007] The ponding assembly comprises a transmission piece and a ponding cutter, the transmission piece is movably connected with the working platform and is drivingly connected with the ponding cutter, and the transmission piece is used to control the ponding cutter to make circular motion; in the process of circular motion, the transmission piece abuts against the baffle in the first interval and is used to push the baffle to make lifting motion.

[0008] In some embodiments, the transmission piece comprises a transmission part and a connecting part, the ponding cutter is connected with the lower part of the connecting part; the transmission part is movably connected with the working platform, the transmission part is drivingly connected with the connecting part, and the transmission part is used to control the connecting part to make circular motion; in the process of circular motion, the connecting part abuts against the baffle in the first interval and is used to push the baffle to make lifting motion.

[0009] In some embodiments, the transmission part comprises a sun gear, a planet gear and a connecting rod, the sun gear is movably connected with the working platform, the sun gear is in meshing connection with the planet gear and is used for driving the planet gear to make a circular motion, and the connecting rod is connected with the planet gear and the connecting part respectively.

[0010] In some embodiments, the connecting part comprises a connecting box, the side surface of the connecting box is connected with the connecting rod, the bottom surface of the connecting box is connected with the furrow cutter, and the top surface of the connecting box is in abutment with the baffle in the first interval.

[0011] In some embodiments, the number of the transmission parts is two, and the two transmission parts are symmetrically arranged on the two sides of the connecting part.

[0012] In some embodiments, the drive assembly further comprises a driving part and a driving wheel, the driving part is used for driving the driving wheel to rotate, and the driving wheel is in transmission connection with the transmission part.

[0013] In some embodiments, the brake assembly is assembled with the working platform, and the brake assembly is used for stopping the movement of the driving wheel.

[0014] In some embodiments, the working platform is provided with a limiting part, and the limiting part is movably connected with the baffle.

[0015] In some embodiments, the upper panel of the working platform is provided with an oblong hole, and the prompting part is arranged in the working platform through the oblong hole.

[0016] In order to solve the above technical problems, another technical scheme of the utility model is adopted.

[0017] The utility model discloses a kind of furrow fertilizing machines, including the operating state prompting device of the furrow fertilizing machine.

[0018] The utility model has the advantages of providing a kind of operating state prompting device of furrow fertilizing machine and furrow fertilizing machine, and the furrow cutter in the furrow fertilizing machine makes circular motion using transmission part and realizes work, using the characteristic of circular motion in the first interval, abutment prompting component in baffle, make baffle to lift, to drive prompting part to lift, then according to the height of the working position of the furrow cutter reflected by the lifting position of prompting part, avoid stopping work when furrow cutter is still in working height, cause land ridge to be destroyed even damage cutter. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is a kind of furrow fertilizing machine schematic view (prompting part subsidence position);

[0020] Figure 2It is a schematic view of an operating state prompting device of a puddle making fertilizer machine;

[0021] Figure 3 It is Figure 2 a partial enlarged view A;

[0022] Figure 4 It is a schematic view of a puddle making fertilizer machine (prompting piece rising position);

[0023] Label explanation:

[0024] 1, prompting assembly; 11, prompting piece; 12, baffle; 2, puddle making assembly; 21, transmission piece; 211, sun gear; 212, planetary gear; 213, connecting rod; 214, connecting box body; 22, puddle making cutter; 3, working platform; 31, long circular hole; 32, limiting piece; 4, driving assembly; 5, brake assembly. DETAILED DESCRIPTION

[0025] In order to make the technical content of the utility model, the purpose and effect realized be explained in detail, the following will be explained in combination with the embodiment and the accompanying drawings.

[0026] Please refer to Figures 1 to 4 , an operating state prompting device of a puddle making fertilizer machine, comprising a prompting assembly 1, a puddle making assembly 2 and a working platform 3;

[0027] The prompting assembly 1 comprises a prompting piece 11 and a baffle 12, the prompting piece 11 and the baffle 12 are connected, and the prompting piece 11 is arranged on the upper panel of the working platform 3;

[0028] The puddle making assembly 2 comprises a transmission piece 21 and a puddle making cutter 22, the transmission piece 21 is movably connected with the working platform 3 and is drivingly connected with the puddle making cutter 22, and the transmission piece 21 is used for controlling the puddle making cutter 22 to make a circular motion; in the process of making the circular motion, the transmission piece 21 is in abutment with the baffle 12 in a first interval and is used for pushing the baffle 12 to make a lifting motion.

[0029] It can be understood that the first interval refers to a specific area in which the transmission assembly (such as the sun gear 211 and the planetary gear 212) of the puddle making fertilizer machine is in contact with the baffle 12 in the prompting assembly 1 and pushes it to lift during the circular motion.

[0030] Specifically, the function of the first interval is that when the puddle making cutter 22 makes a circular motion through the transmission assembly, the transmission assembly will be in contact with the baffle 12 in this area, so that the baffle 12 is lifted. This lifting motion is reflected by the up and down change of the prompting piece 11, which reflects the working height of the cutter. When the transmission assembly enters this specific area, the prompting device can accurately feedback the working position of the cutter and provide visual prompting.

[0031] In the utility model, the first interval is not a fixed space or a single point, but refers to the region where the cutter position interacts with the prompting assembly 1 in the circumferential movement process of the transmission member 21. The specific position and range of this region will be different according to the design and working state of the machine, but it mainly plays the role of feeding back the working state at a specific moment, ensuring that the operator can understand the working position of the cutter in real time through the prompting device.

[0032] From the above description, it can be known that the operation state prompting device of the utility model provides accurate working state feedback through the circumferential movement of the furrow cutter 22. When the furrow cutter 22 in the furrow fertilizer machine performs circumferential movement through the transmission member 21, the baffle 12 located in the first interval contacts the transmission member 21, prompting the baffle 12 to ascend and descend. The working position of the furrow cutter 22 is reflected through the lifting of the prompting member 11, so that accurate monitoring of the working height of the cutter is realized. Its main beneficial effects are: avoiding that the cutter stays at the working height when stopping, reducing the risk of land damage or cutter damage caused by the cutter contacting the ground, ensuring that the machine can automatically or manually adjust the cutter height when stopping working, and improving the safety and stability of the equipment.

[0033] In some embodiments, the transmission member 21 comprises a transmission part and a connecting part, the furrow cutter 22 is connected below the connecting part, the transmission part is movably connected with the working platform 3, the transmission part is drivingly connected with the connecting part, and the transmission part is used for controlling the connecting part to perform circumferential movement. In the process of circumferential movement, the connecting part abuts against the baffle 12 in the first interval and is used for pushing the baffle 12 to perform ascending and descending movement.

[0034] From the above description, it can be known that the introduction of the design of the connecting part and the transmission part in the transmission member 21 makes the power transmission between the furrow cutter 22 and the transmission member 21 more stable and efficient. The connecting part is connected with the furrow cutter 22, and the connecting part is driven to perform circumferential movement through the transmission part, and the transmission part can stably control the circumferential movement through the movable connection. In this process, the connecting part will contact the baffle 12 in the first interval and push it to ascend and descend. The optimization of this structure makes the equipment have stronger adaptability in actual use, can stably work under different working conditions, and at the same time avoids the running failure caused by the unstable structure of the transmission part.

[0035] Specifically, the transmission part comprises a sun gear 211, a planet gear 212 and a connecting rod 213, the sun gear 211 is movably connected with the working platform 3, the sun gear 211 is meshingly connected with the planet gear 212 and is used for driving the planet gear 212 to perform circumferential movement, and the connecting rod 213 is connected with the planet gear 212 and the connecting part respectively.

[0036] That is, by the combination design of the sun gear 211, the planet gear 212 and the connecting rod 213, the driving mode of the ditching tool 22 is optimized. The sun gear 211 is connected with the working platform 3, drives the planet gear 212 to do the circular motion, and the connecting rod 213 transmits the motion of the planet gear 212 to the connecting part. In this way, in the process of circular motion, the transmission part can more stably drive the connecting part and the baffle 12 to do the lifting motion. The biggest advantage of this design is to realize multi-stage transmission of power, improve the efficiency and reliability of the power system. At the same time, through the meshing of the planet gear 212 and the rotation of the sun gear 211, the vibration and noise can be effectively reduced, and the service life of the equipment is prolonged. Preferably, the gear ratio of the sun gear 211 and the planet gear 212 is adjusted according to the demand, which can be comprehensively controlled according to the ditching demand and the running speed.

[0037] Specifically, the connecting part includes a connecting box body 214, one side of the connecting box body 214 is connected with the connecting rod 213, the bottom surface of the connecting box body 214 is connected with the ditching tool 22, and the top surface of the connecting box body 214 is in abutment with the baffle 12 in the first interval.

[0038] From the above description, it can be known that the connecting part adopts the design of the connecting box body 214, one side of the connecting box body 214 is connected with the connecting rod 213, the bottom surface is connected with the ditching tool 22, and the top surface is in contact with the baffle 12. The advantage of this design structure is that the lifting motion of the connecting part is more stable, and the power can be effectively transmitted. At the same time, the connecting box body 214 can be adjusted in size and shape to ensure more accurate contact with the baffle 12 during work, thereby enhancing the reliability of the entire system. Under this design, even in a more complex working environment, the prompt assembly 1 can still accurately reflect the working state of the ditching tool 22, reducing the possibility of misoperation or damage.

[0039] Preferably, the number of the transmission parts is two, and the two transmission parts are symmetrically arranged on both sides of the connecting part.

[0040] From the above description, it can be known that by increasing the number of transmission parts, especially by arranging two transmission parts in a symmetrical manner on both sides of the connecting part, the power distribution of the transmission system can be effectively balanced to ensure more stable motion. The two transmission parts work together to reduce the risk of stopping the entire system due to failure of a single transmission part, thereby improving the operation safety of the ditching fertilizer applicator. In addition, this design can ensure that the ditching tool 22 always maintains uniform power output during work, preventing machine vibration or power imbalance caused by asymmetric transmission parts, and optimizing the working performance of the equipment.

[0041] In some embodiments, a driving assembly 4 is further included, which comprises a driving part and a driving wheel, the driving part being used to drive the driving wheel to rotate, and the driving wheel being in driving connection with the transmission member 21.

[0042] As can be seen from the above description, the driving part and the driving wheel in the driving assembly 4 effectively realize the driving control of the transmission member 21. The driving connection between the driving wheel and the transmission member 21 enables the driving part to accurately control the rotation of the transmission part, thereby controlling the circumferential movement of the furrow cutter 22. The advantage of this design is that it improves the stability of power transmission, reduces the energy loss in the transmission process, and optimizes the working efficiency and performance of the whole machine. In addition, the driving assembly 4 can adjust the output power according to different load requirements to ensure that the equipment can operate stably under different working conditions. In the embodiments, the power system performance and working stability of the whole machine can be further improved by using a more efficient driving part and driving wheel design.

[0043] In some embodiments, a brake assembly 5 is further included, which is assembled with the working platform 3, and is used to stop the movement of the driving wheel.

[0044] As can be seen from the above description, the brake assembly 5 is set to selectively implement braking according to the prompt position of the prompting assembly 1. When the prompting member 11 is at the high point, it indicates that the furrow cutter 22 is not in the working position, and braking can be performed. When the prompting member 11 is at the low point, it indicates that the furrow cutter 22 is in the working position, and braking will cause the ridge to be damaged or the cutter to be damaged. That is, the brake assembly 5 can be flexibly adjusted according to the needs of different working conditions to adapt to different working environments and ensure the stable operation of the system.

[0045] In some embodiments, the working platform 3 is provided with a limiting member 32, which is in movable connection with the baffle 12.

[0046] As can be seen from the above description, the movable connection between the limiting member 32 and the baffle 12 ensures the accurate position of the prompting assembly 1 on the working platform 3. Through the setting of the limiting member 32, the lifting range of the baffle 12 is effectively controlled, avoiding excessive displacement or jamming phenomenon during the working process.

[0047] Preferably, the limiting member 32 and the baffle 12 are connected by a long screw, and the length of the screw is used to limit the movement distance of the baffle 12 in vertical height.

[0048] In some embodiments, the upper panel of the working platform 3 is provided with an oblong hole 31, and the prompting member 11 is arranged in the working platform 3 through the oblong hole 31.

[0049] From the above description, the long circular hole 31 is provided on the working platform 3, so that the prompt part 11 can smoothly pass through and realize the up-down lifting movement. Specifically, the design of the long circular hole 31 can facilitate the lifting action of the prompt part 11 to be more smooth, and ensure the accuracy of reflecting the working state of the furrow cutter 22.

[0050] A furrow fertilizer machine comprises the operation state prompting device. The operation state prompting device is applied to the furrow fertilizer machine, so that the overall performance and working safety of the equipment can be effectively improved. Through the real-time feedback of the working state of the furrow cutter 22 by the prompting device, the user can more accurately control the operation of the equipment, and the problems of land ridge damage or cutter damage caused by the cutter being at an inappropriate height can be avoided. The safety and reliability of the equipment are greatly improved.

[0051] In summary, the operation state prompting device and the furrow fertilizer machine are provided, and the operation state prompting device of the furrow fertilizer machine is innovatively designed, so that the safety, stability and working efficiency of the equipment can be effectively improved. The prompting device accurately feeds back the working state and position of the cutter through the linkage of the circumferential movement of the furrow cutter 22 and the prompt assembly 1, so that the cutter can be automatically adjusted to a non-working height when the machine is stopped, thereby avoiding the land ridge damage or cutter damage caused by the machine being stopped when the cutter is in the working state. Especially during use, the system can reflect the height change of the cutter through the lifting of the prompt part 11, enhance the real-time perception of the equipment state of the operator, and avoid the risks caused by human operation errors.

[0052] In addition, the precise design of the transmission system, including the cooperative action of the sun gear 211, the planet gear 212 and the connecting rod 213 and other components, optimizes the power transmission process, reduces energy loss and improves transmission efficiency. The symmetrical arrangement of multiple transmission parts and the addition of the brake assembly 5 make the system more stable, reduce the vibration and unstable operation caused by mechanical failure or imbalance, and improve the reliability and durability of the equipment.

[0053] The above is only an embodiment of the present application, and does not limit the patent range of the present application, and any equivalent transformation or direct or indirect application in related technical fields based on the content of the present application is also included in the patent protection range of the present application.

Claims

1. A device for indicating the operating status of a pond fertilization machine, characterized in that: Includes prompt components, staking components, and a work platform; The prompting component includes a prompting element and a baffle, the prompting element and the baffle are connected, and the prompting element is inserted through the upper panel of the work platform; The pit-making assembly includes a transmission component and a pit-making cutter. The transmission component is movably connected to the working platform and is driven by the pit-making cutter. The transmission component is used to control the pit-making cutter to perform circular motion. During the circular motion, the transmission component abuts against the baffle in a first interval and is used to push the baffle to perform lifting and lowering motion.

2. The operating status indication device for a pond fertilization machine according to claim 1, characterized in that: The transmission component includes a transmission part and a connecting part. The denting tool is connected to the lower part of the connecting part. The transmission part is movably connected to the working platform and is drivenly connected to the connecting part. The transmission part is used to control the connecting part to perform circular motion. During the circular motion, the connecting part abuts against the baffle in the first interval and is used to push the baffle to perform lifting and lowering motion.

3. The operating status indication device for a pond fertilization machine according to claim 2, characterized in that: The transmission unit includes a sun gear, planet gears, and a connecting rod. The sun gear is movably connected to the working platform. The sun gear meshes with the planet gears and is used to drive the planet gears to perform circular motion. The connecting rod connects the planet gears and the connecting part respectively.

4. The operating status indication device for a pond fertilization machine according to claim 3, characterized in that: The connecting part includes a connecting box, the side of the connecting box is connected to the connecting rod, the bottom surface of the connecting box is connected to the denting tool, and the top surface of the connecting box abuts against the baffle in the first interval.

5. The operating status indication device for a pond fertilization machine according to claim 3, characterized in that: The number of transmission parts is two, and the two transmission parts are symmetrically arranged on both sides of the connecting part.

6. The operating status indication device for a pond fertilization machine according to claim 1, characterized in that: It also includes a drive assembly, which includes a drive unit and a drive wheel. The drive unit is used to drive the drive wheel to rotate, and the drive wheel is connected to the transmission component for transmission.

7. The operating status indication device for a pond fertilization machine according to claim 6, characterized in that: It also includes a braking assembly, which is assembled and connected to the working platform and is used to stop the movement of the drive wheel.

8. The operating status indication device for a pond fertilization machine according to claim 1, characterized in that: The working platform is equipped with a limiting component, which is movably connected to the baffle.

9. The operating status indication device for a pond fertilization machine according to claim 1, characterized in that: The upper panel of the work platform is provided with an elongated hole, through which the prompting device passes.

10. A pond fertilization machine, characterized in that: The device includes an operation status indication device for a pond fertilization machine as described in any one of claims 1-9.