Greening and pest control device

The greening and pest control device designed in the patent solves the problems of uneven mixing of medicine and water and the need for manual driving of the stirring component in the existing medicine root irrigation device, and realizes efficient stirring of medicine solution and convenient operation of the medicine tube.

CN118318817BActive Publication Date: 2025-11-28襄阳园冶风景园林集团有限公司
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Patent Information

Application Number
CN202410242457.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-03-04
Publication Date
2025-11-28
Estimated Expiration
2044-03-04

AI Technical Summary

Technical Problem

Existing drug-drenching devices lack effective stirring components during the driving process, resulting in poor mixing of drugs and water, easy sedimentation, and the existing stirring components require additional manual operation, affecting the stability and ease of operation of the device.

Method used

A greening pest control device was designed, which adopts a stirring frame structure with driven gear and semi-circular gear ring meshing. The device uses shaking motion to achieve forward and reverse rotation stirring of the pesticide solution, eliminating the need for additional manual operation. The pesticide dispensing tube is automatically switched on and off through the combination of central rotating shaft and stirring frame.

Benefits of technology

It achieves efficient dispersion and mixing of medicine and water, reduces sedimentation, eliminates the hassle of manual stirring, and improves the ease of operation and the efficiency of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a greening and deinsectization device, and relates to the technical field of greening and deinsectization, which comprises a sliding ring welded above the top end of a positioning shaft sleeve, the sliding ring is in rotary engagement with a cross beam shaft at the top end of an upright frame, the positioning shaft sleeve is rotationally limited on the middle section of the cross beam shaft, and a semicircular gear ring is welded on one side adjacent to the sliding ring on the cross beam shaft; the distance from the driven gear to the center of the sliding ring is equal to the radius of the semicircular gear ring; the driven gear is in meshing contact with the semicircular gear ring, when the root irrigation water bucket is shifted and shaken forward and backward under the pushing of the following device, the driven gear is driven to swing back and forth along the semicircular gear ring and mesh to control the forward and reverse rotation of the stirring frame to stir the pesticide liquid in the root irrigation water bucket. When the root irrigation water bucket is shifted and shaken forward and backward under the pushing of the following device, the driven gear is driven to swing back and forth along the semicircular gear ring and mesh to control the forward and reverse rotation of the stirring frame to stir the pesticide liquid in the root irrigation water bucket in real time, which saves the trouble of manually driving the stirring frame.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of greening and pest control, and particularly relates to a greening and pest control device. BACKGROUND

[0002] With the acceleration of urbanization and the increasing emphasis on environmental protection, greening has become an important part of urban construction and beautification. However, the process of greening is often accompanied by pest problems, such as mosquito breeding and pest invasion, which has brought some trouble to people's life and health. Drug root irrigation is the most common method of pest control.

[0003] The existing drug root irrigation type pest control device lacks a component that can specifically stir the drug in real time during the use of the pushing device. Generally, only the shaking of the container itself can be used to mix the drug as a whole. The shaking and mixing of the drug and water have poor dispersion effect, resulting in poor mixing effect and easy precipitation. This is particularly evident when the container is large and the drug is stored in the container for a long time.

[0004] Although some devices are equipped with a special rotary stirring component, the stirring component generally needs to be manually driven during use, which affects the stability of the device during movement and is troublesome and laborious. SUMMARY

[0005] Therefore, the present application provides a greening and pest control device to solve the problem of the need for additional manual driving of the stirring component during the use of the pushing device, which is troublesome and laborious to operate.

[0006] The technical solution of the present application is as follows: a greening and pest control device, specifically comprising an upright frame, an inclined pushing frame and a root irrigation water bucket. The upright frame is in a U-shaped structure, and an inclined pushing frame is welded at the top end in an upwardly curved manner. A root irrigation water bucket is rotatably hung at the top end of the upright frame.

[0007] A positioning shaft sleeve is welded at the top center of the root irrigation water bucket, and a stirring frame is rotatably installed at the inner center of the root irrigation water bucket. The top protruding part of the stirring frame center shaft is rotatably connected with the positioning shaft sleeve, and the part of the stirring frame center shaft above the positioning shaft sleeve is sleeved with a driven gear. The driven gear is in transmission with the center shaft of the stirring frame through a key bar.

[0008] The top end of the positioning shaft sleeve is welded with a sliding ring, the sliding ring is in rotating fit with the beam shaft at the top end of the vertical frame, and the sliding ring is limited in rotation on the middle section of the beam shaft, and a semicircular gear ring is welded on one side of the beam shaft adjacent to the sliding ring; the sliding ring and the semicircular gear ring are coaxially arranged, and the driven gear is limited at the top end of the positioning shaft sleeve, and the distance from the driven gear to the center of the sliding ring is equal to the radius of the semicircular gear ring; the driven gear is in meshing contact with the semicircular gear ring, when the root irrigation water bucket is shifted by the follow-up device and shakes forward and backward, the driven gear is driven to reciprocatingly swing along the semicircular gear ring and is in meshing control with the stirring frame to rotate in opposite directions to stir the pesticide liquid in the root irrigation water bucket.

[0009] Further, two vertical hanging plates are symmetrically welded between the sliding ring and the positioning shaft sleeve, two arc-shaped limiting plates are symmetrically welded on the bottom side of the two vertical hanging plates, and the two arc-shaped limiting plates are in abutting contact with the driven gear for limiting the driven gear.

[0010] Further, the stirring frame is composed of a central rotating shaft and a plurality of horizontal stirring rods arranged in equal intervals above and below and welded on the central rotating shaft, wherein the central rotating shaft is in sliding fit with the positioning shaft sleeve and the driven gear;

[0011] The part of the central rotating shaft inside the positioning shaft sleeve is symmetrically provided with two key grooves, and the two key bars inside the driven gear are in sliding fit with the two key grooves.

[0012] Further, a vertical support connecting rod is welded at the middle position of the top end of the root irrigation water bucket, the tail end of the positioning shaft sleeve is fixedly connected with the middle part of the vertical support connecting rod, and the central rotating shaft is in sliding fit with the middle part of the vertical support connecting rod through the spring.

[0013] Further, a pesticide adding pipe is welded at the middle position of the bottom of the root irrigation water bucket, and a plug is rotatably connected to the bottom of the central rotating shaft, the cross section of the plug is in T-shaped structure, and under normal circumstances, the plug is pushed downward by the spring on the central rotating shaft to block the opening at the top end of the pesticide adding pipe.

[0014] Further, an axle hole is formed in the inside of the beam shaft, a rod sleeve is slidingly sleeved at the position of the beam shaft away from the semicircular gear ring, a pull rod is rotatably connected to the bottom of the rod sleeve, and a horizontal pushing plate is rotatably connected to the tail end of the pull rod.

[0015] Further, a baffle is welded at the top end of the central rotating shaft, and the tail end of the horizontal pushing plate is rotatably connected to the part between the baffle and the driven gear on the central rotating shaft.

[0016] Further, two sliding grooves are symmetrically formed in the beam shaft at the position of the rod sleeve, and an L-shaped pulling shaft is inserted and installed in the sliding grooves, two arc-shaped sliding blocks are symmetrically welded at the first end of the L-shaped pulling shaft inside the beam shaft, and the two arc-shaped sliding blocks are in sliding fit with the two sliding grooves and in abutting contact with the rod sleeve.

[0017] Further, the trapezoidal top block is slidably installed on the vertical side rod of the vertical frame close to the side of the rod sleeve, the inclined surface of the trapezoidal top block is in abutting contact with the tail end vertical part of the L-shaped pull shaft, and the trapezoidal top block is upwardly slid to push the L-shaped pull shaft and the rod sleeve outward.

[0018] Further, the slide sleeve is slidably installed on the side rod of the inclined push frame close to the side of the rod sleeve through spring pushing, the connecting rod is rotatably connected to the slide sleeve and is downwardly inclined, the tail end of the connecting rod is rotatably connected to the trapezoidal top block, and the L-shaped handle rod is welded to the slide sleeve and is arranged in the same direction and parallel to the inclined push frame.

[0019] The greening deinsectization device has the following beneficial effects:

[0020] In use, the stirring frame is used to rotate and stir the pesticide liquid in the root irrigation water bucket in real time during the pushing and transferring process of the device, compared with the prior art that relies on the front and rear shaking of the root irrigation water bucket during the pushing and transferring process to implement overall shaking and mixing of the pesticide liquid, the dispersing and mixing effect of the pesticide liquid and water is better, and the generation of drug precipitation can be reduced.

[0021] In addition, when the root irrigation water bucket shakes and swings forward and backward during the pushing and transferring of the device, the driven gear is driven to reciprocatingly swing along the semicircular gear ring and mesh with the control stirring frame to rotate in opposite directions to stir the pesticide liquid in the root irrigation water bucket in real time, which eliminates the trouble of manually driving the stirring frame and is convenient and labor-saving to operate and use.

[0022] In addition, the stirring frame is driven by the swinging force generated during the pushing and transferring of the root irrigation water bucket, and the stirring frame can be rotated and operated only by tilting the inclined push frame and the vertical frame to swing the root irrigation water bucket, which can directly stir and mix the unmixed pesticide liquid and water in the root irrigation water bucket in some cases, eliminates the trouble of mixing the pesticide liquid and water in advance before being added to the root irrigation water bucket, and the stirring frame is in the form of forward and reverse rotation, which is better than the form of traditional single-direction rotation and has a better dispersing and mixing effect on the pesticide liquid and water.

[0023] In addition, the central rotating shaft and the stirring frame can be used as stirring components and also as lower pesticide pipe switch driving components, and have a dual-purpose use effect.

[0024] In addition, the L-shaped handle and the sliding sleeve are welded together to drive the sliding sleeve to slide up and down along the long side of the side rod of the inclined push frame, and the tail end of the L-shaped handle extends close to the tail end handle of the inclined push frame, so that when the device is pushed through the tail end handle of the inclined push frame, the L-shaped handle can be directly held and driven, and the chemical pipe can be switched, which saves the trouble of stopping the vehicle, bending over, and transferring the hand close to the root irrigation water bucket to switch the chemical pipe, and facilitates convenient operation and use, and indirectly improves the use efficiency of the device.

[0025] In addition, the rod sleeve is used as a driving component connected with the stirring frame to drive the stirring frame to slide up and down, and is in the form of rotationally cooperating with two arc-shaped sliding blocks to adapt to the front and rear swinging displacement of the root irrigation water bucket, so that the root irrigation water bucket can be connected with the power of the L-shaped pulling shaft without interruption regardless of how it swings, and can be driven through the sliding sleeve, so that the chemical pipe can be pushed and switched by the L-shaped handle regardless of the angle of the root irrigation water bucket, and the barrier-free and flexible implementation of the chemical pipe switching function is facilitated. BRIEF DESCRIPTION OF DRAWINGS

[0026] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings of the embodiments will be briefly introduced below.

[0027] The drawings described below only relate to some embodiments of the present application, but are not a limitation of the present application.

[0028] In the drawings:

[0029] Figure 1 The overall front side structure schematic diagram of the present application is shown;

[0030] Figure 2 The overall rear side structure schematic diagram of the present application is shown;

[0031] Figure 3 The sliding sleeve disassembly state schematic diagram of the present application is shown;

[0032] Figure 4 The trapezoidal top block structure schematic diagram of the present application is shown;

[0033] Figure 5 The vertical frame structure schematic diagram of the present application is shown;

[0034] Figure 6 The root irrigation water bucket structure schematic diagram of the present application is shown;

[0035] Figure 7 The root irrigation water bucket half-section inside structure schematic diagram of the present application is shown;

[0036] Figure 8 The longitudinal support connecting rod structure schematic diagram of the present application is shown;

[0037] Figure 9The structure diagram of the stirring frame of the present application is shown.

[0038] Figure 10 The structure diagram of the stirring frame of the present application is shown. Figure 9 The structure diagram of the stirring frame of the present application is shown.

[0039] List of reference signs

[0040] 1, vertical frame; 101, inclined push frame; 102, positioning short shaft; 103, sliding sleeve; 104, connecting rod; 105, trapezoidal top block; 106, L-shaped pulling shaft; 107, semicircular gear ring; 108, L-shaped handle;

[0041] 2, root irrigation water bucket; 201, positioning shaft sleeve; 202, sliding ring; 203, longitudinal support connecting rod; 204, shaft ring; 205, arc-shaped limiting plate;

[0042] 3, rod sleeve; 301, pull rod; 302, horizontal push plate;

[0043] 4, bucket cover; 401, flap; 402, pull rod; 403, sleeve ring;

[0044] 5, stirring frame; 501, driven gear; 502, plug. DETAILED DESCRIPTION

[0045] In order to make the purpose, technical scheme and advantages of the present application clearer, the technical scheme of the present application will be described clearly and completely below in combination with the drawings of the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the described embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0046] An embodiment of the present application, please refer to Figures 1 to 10 :

[0047] A greening deinsectization device, comprising a vertical frame 1, an inclined push frame 101 and a root irrigation water bucket 2, the vertical frame 1 is in U-shaped structure, the top end position is welded with the inclined push frame 101 arranged in upturned manner, and the top end of the vertical frame 1 is rotatably hoisted with the root irrigation water bucket 2;

[0048] A positioning shaft sleeve 201 is welded at the top center of the irrigation water bucket 2, and a stirring frame 5 is rotatably installed at the inner center of the irrigation water bucket 2. The top protruding part of the center rotating shaft of the stirring frame 5 penetrates the positioning shaft sleeve 201 and is rotatably connected with the positioning shaft sleeve 201. The top part of the center rotating shaft of the stirring frame 5 above the positioning shaft sleeve 201 is sleeved with a driven gear 501. The driven gear 501 is in transmission with the center rotating shaft of the stirring frame 5 through a key bar. The stirring frame 5 is used to rotate and stir the pesticide liquid in the irrigation water bucket 2 in real time during the use of the pushing and transferring device. Compared with the prior art that relies on the front and back shaking of the irrigation water bucket 2 during the pushing and transferring process to implement the overall shaking and mixing of the pesticide liquid in the irrigation water bucket 2, the mixing effect of the pesticide liquid and water is better, and the generation of drug precipitation can be reduced.

[0049] A slip ring 202 is welded above the top end of the positioning shaft sleeve 201 and is rotatably connected with the beam shaft at the top end of the vertical frame 1. The slip ring 202 is rotatably limited on the middle section of the beam shaft, and a semicircular gear ring 107 is welded on one side of the beam shaft adjacent to the slip ring 202. The slip ring 202 and the semicircular gear ring 107 are coaxially arranged, and the driven gear 501 is limited at the top end of the positioning shaft sleeve 201. The distance from the driven gear 501 to the center of the slip ring 202 is equal to the radius of the semicircular gear ring 107. The driven gear 501 is in meshing contact with the semicircular gear ring 107. When the irrigation water bucket 2 shakes and swings back and forth during the pushing and transferring of the device, the driven gear 501 can be driven to reciprocatingly swing along the semicircular gear ring 107 and control the stirring frame 5 to rotate in opposite directions to stir the pesticide liquid in the irrigation water bucket 2 in real time. This eliminates the need for additional manual effort to drive the stirring frame 5, and the operation is convenient and labor-saving.

[0050] The stirring frame 5 is driven by the shaking force generated during the pushing and transferring of the irrigation water bucket 2. To rotate and operate the stirring frame 5, it is only necessary to tilt the pushing frame 101 and the vertical frame 1 to make the irrigation water bucket 2 shake by inertia. In some cases, the pesticide liquid and water can be directly stirred and mixed in the irrigation water bucket 2 by this method without the need to mix them in advance before being added to the irrigation water bucket 2.

[0051] In addition, the stirring frame 5 rotates in opposite directions, which is better than the traditional single-directional rotation stirring form and has a better mixing effect on the pesticide liquid and water.

[0052] Preferably, two vertical hanging plates are symmetrically welded between the slip ring 202 and the positioning shaft sleeve 201. Two arc-shaped limiting plates 205 are symmetrically welded on the bottom side of the two vertical hanging plates and are in abutting contact with the driven gear 501 to limit the driven gear 501.

[0053] Preferably, the stirring frame 5 is composed of a center rotating shaft and multiple horizontal stirring rods which are equally spaced above and below the center rotating shaft and are welded to the center rotating shaft.

[0054] The part of the central rotating shaft inside the positioning shaft sleeve 201 is symmetrically provided with two key grooves, and the two key strips inside the driven gear 501 correspondingly slide with the two key grooves. The slide of the two key grooves and the two key strips can ensure that the stirring frame 5 does not interrupt the power connection with the driven gear 501 when it slides up and down, and ensures that the stirring frame 5 can normally rotate and stir while being raised and lowered.

[0055] Preferably, a vertical support connecting rod 203 is welded at the middle of the top end of the root irrigation water bucket 2, the tail end of the positioning shaft sleeve 201 is fixedly connected with the middle part of the vertical support connecting rod 203, and the central rotating shaft penetrates and slide-fits with the middle part of the vertical support connecting rod 203 through spring pushing.

[0056] Preferably, a lower medicine pipe is welded at the middle of the bottom of the root irrigation water bucket 2, and a plug 502 is rotationally connected to the bottom of the central rotating shaft. The cross section of the plug 502 is T-shaped structure. Under normal circumstances, the plug 502 is pushed downward by the spring on the central rotating shaft and blocked at the top opening of the lower medicine pipe.

[0057] Preferably, an axle hole is formed in the inside of the cross beam shaft, a rod sleeve 3 is slide-fitted at the position of the cross beam shaft away from the semicircular gear ring 107, a pull rod 301 is rotationally connected to the bottom of the rod sleeve 3, and a horizontal pushing plate 302 is rotationally connected to the tail end of the pull rod 301.

[0058] Preferably, a baffle plate is welded at the top end of the central rotating shaft, and the tail end of the horizontal pushing plate 302 is rotationally connected to the part between the baffle plate on the central rotating shaft and the driven gear 501. The baffle plate is used to transmit the driving force of the upward sliding of the horizontal pushing plate 302 to the central rotating shaft. The central rotating shaft, the positioning shaft sleeve 201 and the driven gear 501 all penetrate and slide-fit. The rod sleeve 3, the pull rod 301 and the horizontal pushing plate 302 and the central rotating shaft are jointly connected to form a crank slider mechanism. The left and right sliding of the rod sleeve 3 can drive the central rotating shaft and the plug 502 to slide up and down to open and close the lower medicine pipe. In this way, the central rotating shaft and the stirring frame 5 can be used as stirring parts and also as lower medicine pipe opening and closing driving parts, which has the effect of one device with two uses.

[0059] Preferably, two slide grooves are symmetrically formed in the cross beam shaft at the position of the rod sleeve 3, and an L-shaped pull shaft 106 is inserted and installed in the cross beam shaft. Two arc-shaped sliding blocks are symmetrically welded at the first end of the L-shaped pull shaft 106 inside the cross beam shaft, and the two arc-shaped sliding blocks slide with the two slide grooves and abut against the rod sleeve 3.

[0060] Preferably, the vertical side rod of the vertical frame 1 near the one side of the rod sleeve 3 is slidingly installed with a trapezoidal top block 105, the inclined surface of the trapezoidal top block 105 is in abutting contact with the tail end vertical part of the L-shaped pulling shaft 106, the trapezoidal top block 105 slides upward to push the L-shaped pulling shaft 106 and the rod sleeve 3 outward, providing driving force for the upward sliding opening of the stirring frame 5 and the plug 502, and the L-shaped pulling shaft 106 and the rod sleeve 3 are driven back to the original position by the spring rebound of the stirring frame 5.

[0061] Preferably, the inclined push frame 101 is welded with a positioning short shaft 102 on the side rod near the one side of the rod sleeve 3, the positioning short shaft 102 and the side rod corresponding to the position are slidingly installed with a sliding sleeve 103 through spring pushing, the sliding sleeve 103 is rotationally connected with a connecting rod 104 arranged downwardly inclined, the tail end of the connecting rod 104 is rotationally connected with the trapezoidal top block 105, and the sliding sleeve 103 is welded with an L-shaped handle 108 (as shown in Figure 1 The sliding sleeve 103, the connecting rod 104 and the trapezoidal top block 105 also jointly form a crank slider mechanism, through which the upward and downward sliding of the sliding sleeve 103 can drive the upward and downward sliding of the trapezoidal top block 105 to control the upward and downward sliding of the plug 502;

[0062] The L-shaped handle 108 is welded and fixed with the sliding sleeve 103 to drive the sliding sleeve 103 to slide up and down along the long side direction of the side rod of the inclined push frame 101, and the tail end of the L-shaped handle 108 extends near the tail end handle of the inclined push frame 101, which facilitates the direct holding and driving of the L-shaped handle 108 by both hands when pushing the device through the tail end handle of the inclined push frame 101, and indirectly improves the use efficiency of the device.

[0063] The L-shaped pulling shaft 106 is a power transmission component between the two crank slider mechanisms, which transmits the pulling force to the right through the abutting contact of the two arc-shaped sliders with the rod sleeve 3, and the rod sleeve 3 is a driving component connected with the stirring frame 5 to drive the stirring frame 5 to slide up and down, in order to adapt to the forward and backward swinging displacement of the root irrigation water bucket 2, the form of rotationally cooperating with the two arc-shaped sliders is adopted, so that the root irrigation water bucket 2 can be driven through the sliding sleeve 103 without interrupting the power connection with the L-shaped pulling shaft 106 no matter how it swings, and the chemical pipe can be pushed and opened by the L-shaped handle 108 no matter how it swings with the root irrigation water bucket 2, which facilitates the barrier-free and flexible implementation of the chemical pipe opening function.

[0064] Preferably, the top opening of the root irrigation bucket 2 is fixed with a bucket cover 4 by screw locking, the bucket cover 4 is symmetrically provided with two rectangular feeding slots, and two flaps 401 are installed on the two rectangular feeding slots.

[0065] Preferably, the positioning shaft sleeve 201 is provided with a shaft ring 204 by spring pushing and sliding, the two first ends of the two pulling rods 402 are rotatably connected with the shaft ring 204, and a positioning bolt is rotatably installed on the shaft ring 204, the shaft ring 204, the two pulling rods 402 and the two flaps 401 together form a crank rocker mechanism, by which the upward and downward sliding of the shaft ring 204 drives the upward and downward turning of the two flaps 401 to open and close the two rectangular feeding slots, the spring on the positioning shaft sleeve 201 is used to push the shaft ring 204 downward to provide a driving force for the downward pressing of the two flaps 401, and the positioning bolt can tightly fix the positioning shaft sleeve 201 at the upward sliding position to keep the two flaps 401 in the upward opening state.

[0066] Preferably, a circular notch is formed in the center of the bucket cover 4, and a sleeve ring 403 is welded on the circular notch, and a circular protrusion is arranged in the middle of the longitudinal support connecting rod 203, and the sleeve ring 403 is tightly sealed with the circular protrusion.

[0067] The working principle of the embodiment is as follows: when in use, the root irrigation bucket 2 is filled with mixed pesticide solution, and then the device is moved to the position of the green plant planting, and then the pesticide pipe is opened to leak the pesticide solution in the root irrigation bucket 2 to the soil around the roots of the green plant to complete the root irrigation and pest control;

[0068] When the root irrigation bucket 2 is shaken and turned back and forth during the movement of the device, the driven gear 501 is driven to reciprocatingly swing along the semicircular gear ring 107 and mesh with the driven gear 501 to control the forward and reverse rotation of the stirring frame 5 to real-time stir the pesticide solution in the root irrigation bucket 2, thereby reducing the generation of pesticide deposits;

[0069] The sliding sleeve 103, the connecting rod 104 and the trapezoidal top block 105 together form a crank slider mechanism, by which the upward and downward sliding of the sliding sleeve 103 can drive the upward and downward sliding of the trapezoidal top block 105, and the upward and downward sliding of the trapezoidal top block 105 can drive the left and right sliding of the L-shaped pulling shaft 106 and the rod sleeve 3, and the rod sleeve 3, the pulling rod 301 and the horizontal pushing plate 302 and the center rotating shaft together form a crank slider mechanism, by which the left and right sliding of the rod sleeve 3 can drive the upward and downward sliding of the center rotating shaft and the plug 502 to open and close the pesticide pipe.

[0070] The L-shaped handle 108 is welded with the sliding sleeve 103 to drive the sliding sleeve 103 to slide up and down along the long side of the side rod of the inclined push frame 101 to open and close the medicine outlet pipe, and the tail end of the L-shaped handle 108 extends close to the tail end handle of the inclined push frame 101, so that the hands can directly hold and drive the L-shaped handle 108 to open and close the medicine outlet pipe when the device is pushed through the tail end handle of the inclined push frame 101;

[0071] The two rectangular feeding grooves are used to supplement or inject the medicine liquid into the root irrigation water bucket 2, and the shaft ring 204, the two pulling rods 402 and the two turning plates 401 are connected to form a crank rocker mechanism, through which the shaft ring 204 is driven to slide up and down to drive the two turning plates 401 to turn up and down to open and close the two rectangular feeding grooves, the spring on the positioning shaft sleeve 201 is used to push the shaft ring 204 downward to provide a driving force for the two turning plates 401 to press downward and seal, and the positioning bolt can tightly fix the positioning shaft sleeve 201 at the position of sliding upward to keep the two turning plates 401 in the state of turning up and opening.

[0072] The above is only a specific embodiment of the present application, but the protection scope of the present application is not limited to this, any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present application, which should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A green pest control device comprising: The utility model provides a vertical frame (1), tilt and push frame (101) and irrigate water bucket (2), the vertical frame (1) is welded with tilt and push frame (101), and vertical frame (1) is rotatably hung with irrigate water bucket (2), Its characterized in that: the top center position of irrigate water bucket (2) is welded with positioning shaft sleeve (201), and stirring frame (5) is rotatably installed on positioning shaft sleeve (201), and the main part of stirring frame (5) is located in irrigate water bucket (2), and the top part of stirring frame (5) center pivot is sleeved with driven gear (501). The irrigate water bucket (2) is rotatably limited on the middle section of the top beam shaft of vertical frame (1), and a semicircular gear ring (107) is welded on the beam shaft, the driven gear (501) is limited on the top of the positioning shaft sleeve (201), and the driven gear (501) is in meshing contact with the semicircular gear ring (107). The top of the positioning shaft sleeve (201) is welded with a slip ring (202), which is rotatably connected with the beam shaft at the top of the vertical frame (1). Two vertical hangers are symmetrically welded between the slip ring (202) and the positioning shaft sleeve (201), two arc-shaped limit plates (205) are symmetrically welded on the bottom side of the two vertical hangers, and the two arc-shaped limit plates (205) are in abutting contact with the driven gear (501) to block and limit the driven gear (501). The stirring frame (5) is composed of a center pivot and a plurality of horizontal stirring rods arranged equidistantly above and below the center pivot, wherein the center pivot is slidably connected with the positioning shaft sleeve (201) and the driven gear (501). The part of the center pivot inside the positioning shaft sleeve (201) is symmetrically provided with two key grooves, and the two key bars inside the driven gear (501) are slidably connected with the two key grooves.

2. The device for greening and pest control according to claim 1, characterized in that: The top middle position of the irrigate water bucket (2) is welded with a longitudinal support connecting rod (203), the tail end of the positioning shaft sleeve (201) is fixedly connected with the middle part of the longitudinal support connecting rod (203), and the center pivot is slidably connected with the middle part of the longitudinal support connecting rod (203) through a spring.

3. The device of claim 1, wherein: The bottom middle position of the irrigate water bucket (2) is welded with a lower medicine pipe, and the bottom of the center pivot is rotatably connected with a plug (502), which has a T-shaped structure. Under normal circumstances, the plug (502) is pushed downward by the spring on the center pivot and blocks the top opening of the lower medicine pipe.

4. The device of claim 3, wherein: The inside of the beam shaft is provided with a shaft hole, and a rod sleeve (3) is slidably sleeved on the end of the beam shaft away from the semicircular gear ring (107), the bottom of the rod sleeve (3) is rotatably connected with a pull rod (301), and the tail end of the pull rod (301) is rotatably connected with a horizontal pushing plate (302).

5. The device for green pest control according to claim 4, characterized in that: The top end of the center pivot is welded with a baffle, and the tail end of the horizontal pushing plate (302) is rotatably connected between the baffle on the center pivot and the driven gear (501).

6. The device of claim 4, wherein: The two symmetrical grooves are located on the upper and lower positions of the rod sleeve (3) on the beam shaft, and an L-shaped pull shaft (106) is inserted and installed in the grooves. The first end of the L-shaped pull shaft (106) inside the beam shaft is symmetrically welded with two arc-shaped sliding blocks, which are in sliding fit with the two grooves and abut against the rod sleeve (3).

7. The device of claim 6, wherein: The vertical side rod of the vertical frame (1) near the rod sleeve (3) is slidably provided with a trapezoidal top block (105), the inclined surface of the trapezoidal top block (105) abuts against the tail end vertical part of the L-shaped pull shaft (106), and the trapezoidal top block (105) slides upward to push the L-shaped pull shaft (106) and the rod sleeve (3) outward.

8. The device of claim 7, wherein: The inclined push frame (101) is slidably provided with a sliding sleeve (103) on the side rod near the rod sleeve (3) through spring pushing, the sliding sleeve (103) is rotatably connected with a downward inclined connecting rod (104), the tail end of the connecting rod (104) is rotatably connected with the trapezoidal top block (105), and the sliding sleeve (103) is welded with an L-shaped handle (108) arranged in the same direction and parallel to the inclined push frame (101).

Citation Information

Patent Citations

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