Movable forestry fertilizer applicator and use method thereof

By designing adjustment, fertilization, and lifting mechanisms, the problem of pulleys easily getting tangled in complex terrain was solved, enabling convenient movement in different terrains and effective fertilization control of raw materials.

CN121511731AInactive Publication Date: 2026-02-13ZHEJIANG HONGSEN ECOLOGICAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202610010233.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-01-06
Publication Date
2026-02-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In gardens with complex terrain, the pulleys of mobile forestry fertilizer applicators are easily entangled by weeds, making it difficult to move the applicator.

Method used

A mobile forestry fertilizer applicator was designed, comprising an adjustment mechanism, a fertilization mechanism, and a lifting mechanism. The position of the machine body is controlled by casters and manually pulled telescopic components. A shoulder strap is provided for use in complex terrain. The movement of raw materials is controlled by lifting components and discharge components to reduce tangling and clumping.

Benefits of technology

It effectively solves the problem of difficulty in moving fertilizer applicators in complex terrain, improves the ease of operation for users, reduces material waste and clumping, and enhances the controllability of the fertilization process.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention discloses a movable forestry fertilizer applicator and a use method thereof, and relates to the technical field of fertilizer application. A body is included; the clamping groove is formed in the machine body; the clamping frame is mounted in the clamping groove through a screw; the bedplate is mounted at the top of the machine body; the adjusting mechanism is arranged outside the machine body, the adjusting mechanism comprises a limiting plate and universal wheels, and the limiting plate is used for driving the universal wheels to ascend and descend; the fertilizer applying mechanism is connected with the clamping frame, the fertilizer applying mechanism comprises a storage barrel, the storage barrel is connected with the clamping frame, a lifting assembly is arranged in the storage barrel, a discharging assembly is arranged outside the lifting assembly, the lifting assembly is used for driving raw materials in the storage barrel to ascend and descend, and the discharging assembly is used for discharging the raw materials in the storage barrel. According to the movable forestry fertilizer applicator and the use method thereof, by arranging the adjusting mechanism, the fertilizer applying mechanism and the lifting mechanism, the purpose of improving the use efficiency of the equipment is achieved.
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Description

Technical Field

[0001] This invention relates to the field of fertilization technology, specifically to a mobile forestry fertilizer applicator and its usage method. Background Technology

[0002] Forestry planting refers to the establishment and management of forests through the artificial planting of trees. Planting trees can achieve various goals, such as providing timber, protecting water resources, preventing soil erosion, and improving the ecological environment. When carrying out forestry planting, factors such as tree species selection, soil conditions, climate adaptability, and pest and disease control need to be considered.

[0003] A mobile forestry fertilizer applicator is disclosed in utility model patent CN220935622U. It consists of a main body, a frame, and auxiliary mechanisms. When the operator needs to move the main body of the fertilizer applicator, they can first press a button downwards. Moving the button downwards causes a connecting rod to move downwards, which in turn causes a sliding rod to slide downwards along a track groove. As the sliding rod slides downwards, it compresses a block that moves inwards. This inward movement of the block then moves a limiting rod and a collar inwards. The inward movement of the limiting rod compresses a spring. This will cause the limit rod to disengage from the limit hole. Then, by pulling the handle upwards, the connecting rod and the movable frame will move upwards, causing the internal components to move upwards as well. After pulling the connecting rod out of the structural frame to a suitable length, the operator can release their hand from the button. Under the spring's rebound force, the limit rod will be pushed outwards, engaging with the limit hole. This also keeps the movable frame within the structural frame. Finally, with the help of the handle, connecting rod, and casters, the fertilizer applicator body can be pulled, achieving the advantages of convenient movement and labor saving. However, when fertilizing in gardens with complex terrain, the pulleys are prone to getting tangled in weeds during the movement of the fertilizer applicator, making it difficult to move. Summary of the Invention

[0004] To overcome the problem that when users carry out fertilization work in gardens with complex terrain, the pulleys of the fertilizer applicator are easily entangled by weeds during the movement of the fertilizer applicator, making it difficult to move the fertilizer applicator, the present invention provides a mobile forestry fertilizer applicator, including a body; Card slot, which is formed inside the body; A slotting bracket, which is installed inside the slot by screws; A platform, which is mounted on the top of the machine body; An adjustment mechanism is provided on the outside of the machine body. The adjustment mechanism includes a limit plate and casters. The limit plate is used to drive the casters to rise and fall. A fertilizer applicator is connected to a positioning frame. The fertilizer applicator includes a storage cylinder connected to the positioning frame. A lifting assembly is installed inside the storage cylinder, and a discharge assembly is installed outside the lifting assembly. The lifting assembly is used to drive the raw materials inside the storage cylinder to rise and fall.

[0005] Preferably, it further includes: The first telescopic component is installed on the top of the platform; A lifting mechanism is installed on the top of the platform and is used to seal the storage cylinder.

[0006] Preferably, the adjustment mechanism further includes: A groove, wherein the groove is formed inside the body; A patch, wherein multiple patches are installed inside the groove and are evenly distributed; Adjustable shoulder straps are installed on the outside of the machine body. There are two adjustable shoulder straps installed and they are arranged symmetrically.

[0007] Preferably, the adjustment mechanism further includes: A through slot is provided at the bottom of the machine body. There are two through slots, which are arranged symmetrically. The slide groove is formed on the side of the machine body. There are two slide grooves, which are symmetrically arranged. The limiting plate is slidably connected inside the slide groove. Gaskets, wherein multiple gaskets are installed on the outside of the machine body and are evenly distributed; A tension rod is connected to a limiting plate, and a first adjusting rod is installed at the bottom of the tension rod, with a caster wheel installed at the bottom of the first adjusting rod.

[0008] Preferably, the fertilization mechanism further includes: The lifting plate is slidably connected to the inside of the storage cylinder, the lifting plate is connected to the lifting assembly, and the inside of the lifting plate has a channel; A first lifting rod is installed inside the machine body, and a base plate is installed on the top of the first lifting rod, the base plate being connected to the lifting assembly.

[0009] Preferably, the lifting assembly includes: The second lifting rod is installed on the top of the base plate and is connected to the lifting plate. The first telescopic pipe is connected to the bottom of the lifting platform; A connecting ring, the connecting ring being installed on the outside of the first telescopic pipe; An inclined tube, which is connected to a first telescopic pipe; A connecting plate, which is connected to a connecting ring, is installed at the bottom of the storage cylinder.

[0010] Preferably, the discharge assembly includes: The second expansion joint is installed outside the inclined pipe; A discharge pipe, wherein the discharge pipe is installed at the bottom of the second telescopic pipe; An annular connecting plate is installed outside the second telescopic pipe, and a second push rod is installed outside the annular connecting plate, with the fixed end of the second push rod installed outside the machine body; The first push rod is mounted on the outside of the annular connecting plate; A movable box is installed outside the first push rod and is slidably connected to the second telescopic pipe. A blocking plate is installed at the bottom of the movable box.

[0011] Preferably, the lifting mechanism includes: A stretching plate, which is installed inside the platform; The second telescopic component is installed on the top of the platform; The third push rod is installed at the bottom of the second telescopic member; A disc is mounted at the bottom of a third push rod. A spring is mounted at the bottom of the disc. A connecting block is mounted at the bottom of the spring. An inclined plate is mounted at the bottom of the connecting block.

[0012] This invention provides a method for using a mobile forestry fertilizer applicator, comprising the following steps: S1. Before using the equipment, use the adjustment mechanism to choose to place the equipment on the ground and drag it or carry it on the user's back to install the equipment on the cart. S2. Move the equipment to the fertilization position, adjust the discharge component in the fertilization mechanism, and let the discharge component complete the fertilization work; S3. During the fertilization process, adjust the lifting components and lifting mechanism in the fertilization mechanism. The lifting components and lifting mechanism drive the movement of raw materials to promote the dispersion of raw materials. S4. After this fertilization work is completed, adjust the fertilization mechanism, add the raw materials into the storage cylinder, and the raw materials enter the discharge component through the storage cylinder for the next fertilization work.

[0013] This invention provides a mobile forestry fertilizer applicator and its usage method. It has the following beneficial effects: 1. This portable forestry fertilizer applicator and its usage method, through the inclusion of an adjustment mechanism, allows for selection of the appropriate operating mode based on the fertilization location in the garden. When fertilizing in gardens with complex terrain, the casters can easily become entangled in weeds during movement, making the applicator difficult to move. Therefore, an adjustment mechanism is included. If the fertilization location is flat, the position of the machine can be controlled by using the casters and manually pulling the first telescopic component. If the fertilization location has many weeds and branches, the machine can be carried on the user's back with a soft padding to improve user comfort and solve the aforementioned problems.

[0014] 2. This mobile forestry fertilizer applicator and its usage method, by setting up a discharge component, places the discharge pipe in a moving box. The moving box drives the blocking plate to move, thereby controlling the movement of raw materials in the discharge pipe and thus controlling the amount of fertilizer applied. Furthermore, during the fertilization process, the feed pipe remains within the moving box, reducing the impact of strong winds on the fertilization work.

[0015] 3. This mobile forestry fertilizer applicator and its usage method, through the setting of a fertilizer applicator and a lifting component, drives the movement of raw materials in the storage cylinder. During the fertilization process, the lifting plate, which is thicker at the edges and thinner in the middle, facilitates the movement of the raw materials through the channel in the middle of the lifting plate to the first telescopic pipe, and then through the first telescopic pipe into the discharge component for fertilization, thereby reducing the amount of raw materials in the corners of the storage cylinder and thus reducing waste. Furthermore, during the fertilization process, the lifting plate drives the movement of the raw materials, promoting dispersion and reducing clumping. Simultaneously, the lifting plate causes the first telescopic pipe to extend or shorten, promoting the movement of the raw materials within the first telescopic pipe and the inclined pipe.

[0016] 4. The mobile forestry fertilizer applicator and its usage method are described. By setting up a lifting mechanism, a disc is used to seal the top of the storage cylinder. By controlling the height of the disc, the inclined plate at the bottom of the disc contacts the raw material, driving the raw material to move. The disc, in conjunction with the lifting plate at the bottom, drives the raw material to move in two directions alternately, reducing the occurrence of raw material clumping. Attached Figure Description

[0017] Figure 1 This is a flowchart of the present invention; Figure 2 This is a schematic diagram of the overall structure of the present invention; Figure 3 This is a schematic diagram of the back structure of the present invention; Figure 4 This is a schematic diagram of the adjustment mechanism structure of the present invention; Figure 5 For the present invention Figure 4 Schematic diagram of the structure at point A; Figure 6 This is a schematic diagram of the fertilization mechanism of the present invention; Figure 7 This is a schematic diagram of the lifting component structure of the present invention; Figure 8 This is a schematic diagram of the material discharge assembly structure of the present invention; Figure 9 This is a schematic diagram of the lifting mechanism of the present invention.

[0018] In the diagram: 1. Body; 2. Adjustment mechanism; 201. Groove; 202. Patching block; 203. Adjustment strap; 204. Through groove; 205. Slide groove; 206. Shim; 207. Limiting plate; 208. Tension rod; 209. First adjusting rod; 210. Caster wheel; 3. Slot; 4. Positioning frame; 5. Fertilizer applicator; 501. Storage cylinder; 502. Lifting plate; 503. Lifting assembly; 5031. Second lifting rod; 5032. First telescopic pipe; 5033. Connecting ring; 5034. Inclined tube; 50 35. Connecting plate; 504. Discharge assembly; 5041. Second telescopic pipe; 5042. Discharge pipe; 5043. Moving box; 5044. Blocking plate; 5045. First push rod; 5046. Annular connecting plate; 5047. Second push rod; 505. Base plate; 506. First lifting rod; 6. Platform; 7. Lifting mechanism; 701. Stretching plate; 702. Second telescopic component; 703. Third push rod; 704. Disc; 705. Spring; 706. Connecting block; 707. Inclined plate; 8. First telescopic component. Detailed Implementation

[0019] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments. The embodiments of the present invention are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the invention to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described to better illustrate the principles and practical application of the invention, and to enable those skilled in the art to understand the invention and design various embodiments with various modifications suitable for a particular purpose.

[0020] like Figures 1-9 As shown, the present invention provides a technical solution: including a body 1; Card slot 3 is located inside the main body 1; The slot bracket 4 is installed inside the slot 3 by screws; Platform 6 is mounted on top of body 1; Adjustment mechanism 2 is located outside the body 1. Adjustment mechanism 2 includes a limit plate 207 and a caster wheel 210. The limit plate 207 is used to drive the caster wheel 210 to rise and fall. Fertilizer application mechanism 5 is connected to positioning frame 4. Fertilizer application mechanism 5 includes storage cylinder 501, storage cylinder 501 is connected to positioning frame 4. Lifting component 503 is provided inside storage cylinder 501, and discharge component 504 is provided outside lifting component 503. Lifting component 503 is used to drive the raw material in storage cylinder 501 to lift. There are two storage cylinders 501. The first telescopic component 8 is installed on the top of the platform 6. The first telescopic component 8 consists of two adjustable rods and an arc-shaped handle. Lifting mechanism 7 is installed on the top of platform 6 and is used to seal storage cylinder 501.

[0021] Before using the equipment, use adjustment mechanism 2 to choose whether to drag the equipment on the ground, carry it on the user's back, or mount it on a trolley. Then move the equipment to the fertilization position and adjust the discharge component 504 in the fertilization mechanism 5 to complete the fertilization process. During fertilization, adjust the lifting component 503 and lifting mechanism 7 in the fertilization mechanism 5. These components will move the raw materials, promoting dispersion. After the fertilization is completed, adjust the fertilization mechanism 5 to add the raw materials to the storage cylinder 501. The raw materials then enter the discharge component 504 through the storage cylinder 501 for the next fertilization cycle.

[0022] Adjustment mechanism 2 also includes: Groove 201, groove 201 is formed inside the body 1; The adhesive block 202 is installed inside the groove 201. Multiple adhesive blocks 202 are provided and evenly distributed. A soft pad is installed on the outside of the adhesive block 202. Adjustable shoulder straps 203 are installed on the outside of the body 1. There are two adjustable shoulder straps 203, which are symmetrically arranged. Through slot 204, through slot 204 is opened at the bottom of the body 1, and there are two through slots 204, which are symmetrically arranged; The slide 205 is provided on the side of the body 1. There are two slides 205, which are symmetrically arranged. The limiting plate 207 is slidably connected inside the slide 205. Gasket 206 is installed on the outside of the body 1. Multiple gaskets 206 are provided and are evenly distributed. Gaskets 206 are made of rubber. The tension rod 208 is connected to the limiting plate 207. A first adjusting rod 209 is installed at the bottom of the tension rod 208, and a caster wheel 210 is installed at the bottom of the first adjusting rod 209.

[0023] Before using the equipment, select the appropriate operating method for the machine body 1 based on the location of the fertilization in the garden. If the terrain of the fertilization location is flat, the limiting plate 207 can be manually moved. As the limiting plate 207 moves downward in the slide groove 205, it compresses the pad 206, causing the pad 206 to deform. Subsequently, the limiting plate 207 is at the bottom of the slide groove 205 and is stuck below the pad 206. At the same time, the limiting plate 207 pulls the tension rod 208, which drives the first adjusting rod 209 and the universal wheel 210 to move downward, and the universal wheel 210 gradually lands. At this time, the user can manually adjust the length of the first telescopic component 8 and manually pull the arc-shaped handle in the first telescopic component 8 to control the position of the machine body 1.

[0024] If there are many weeds and branches at the fertilization location, the user can manually adjust the shoulder strap 203 to carry the machine 1 on their back and move the machine 1 to the fertilization location.

[0025] By setting the adjustment mechanism 2, the appropriate usage mode of the machine 1 can be selected according to the location of the fertilization in the garden. If the terrain of the fertilization location is flat, the position of the machine 1 can be controlled by the casters 210 and by manually pulling the first telescopic component 8. If there are many weeds and branches in the fertilization location, the machine 1 can be carried on the user's back with a soft pad to improve the user's comfort.

[0026] Fertilizer application unit 5 also includes: The lifting plate 502 is slidably connected to the inside of the storage cylinder 501. The lifting plate 502 is connected to the lifting assembly 503. The inside of the lifting plate 502 has a channel. The upper surface of the lifting plate 502 is thick at the outer edge and thin in the middle to facilitate the raw materials to slide into the channel. The first lifting rod 506 is installed inside the machine body 1. A base plate 505 is installed on the top of the first lifting rod 506, and the base plate 505 is connected to the lifting assembly 503.

[0027] Lifting assembly 503 includes: The second lifting rod 5031 is installed on the top of the base plate 505 and is connected to the lifting plate 502. The first telescopic pipe 5032 is connected to the bottom of the lifting plate 502; Connecting ring 5033, the connecting ring 5033 is installed on the outside of the first telescopic pipe 5032; Inclined tube 5034 is connected to the first telescopic tube 5032 and is also connected to the connecting ring 5033. Connecting plate 5035 is connected to connecting ring 5033 and is installed at the bottom of storage cylinder 501.

[0028] During fertilization, the lifting plate 502 is at the lowest position inside the storage cylinder 501. The raw materials in the storage cylinder 501 enter the channel through the lifting plate 502, and then enter the first telescopic pipe 5032 through the channel. They then enter the inclined pipe 5034 through the first telescopic pipe 5032, and finally enter the discharge component 504 through the inclined pipe 5034. The fertilization work is completed through the discharge component 504.

[0029] During fertilization, the second lifting rod 5031 is intermittently activated. The second lifting rod 5031 drives the lifting plate 502 upward, which in turn moves the raw materials within the storage cylinder 501, promoting material dispersion. As the lifting plate 502 moves, since the connecting plate 5035 is installed at the bottom of the storage cylinder 501, and the connecting ring 5033 is connected to the outside of the inclined tube 5034, the inclined tube 5034 remains stationary while the lifting plate 502 extends the first telescopic pipe 5032, thus promoting the movement of the raw materials within the first telescopic pipe 5032 and the inclined tube 5034.

[0030] By setting up the fertilization mechanism 5 and the lifting assembly 503, the raw materials in the storage cylinder 501 are moved. During the fertilization process, the lifting plate 502, which is thick at the edges and thin in the middle, facilitates the movement of the raw materials through the channel in the middle of the lifting plate 502 to the first telescopic pipe 5032, and then through the first telescopic pipe 5032 into the discharge assembly 504 for fertilization. This reduces the amount of raw materials at the corners of the storage cylinder 501, thereby reducing waste. Furthermore, during the fertilization process, the lifting plate 502 moves the raw materials, promoting dispersion and reducing clumping. Simultaneously, the lifting plate 502 stretches or shortens the first telescopic pipe 5032, promoting the movement of the raw materials within the first telescopic pipe 5032 and the inclined pipe 5034.

[0031] The discharge assembly 504 includes: The second telescopic pipe 5041 is installed outside the inclined pipe 5034; The discharge pipe 5042 is installed at the bottom of the second telescopic pipe 5041; An annular connecting plate 5046 is installed outside the second telescopic pipe 5041. A second push rod 5047 is installed outside the annular connecting plate 5046. The fixed end of the second push rod 5047 is installed outside the body 1. The first push rod 5045 is installed on the outside of the annular connecting plate 5046; The movable box 5043 is installed outside the first push rod 5045. The movable box 5043 is slidably connected to the second telescopic pipe 5041. A blocking plate 5044 is installed at the bottom of the movable box 5043.

[0032] Before fertilization, the first push rod 5045 is in its initial state. At this time, the blocking plate 5044 is at the bottom of the discharge pipe 5042. The raw material moves through the inclined pipe 5034 to the second telescopic pipe 5041 and the discharge pipe 5042. Because the blocking plate 5044 blocks the bottom of the discharge pipe 5042, the raw material cannot move downward.

[0033] When fertilizing, the first push rod 5045 is activated, which moves the movable box 5043. The movable box 5043 moves the blocking plate 5044, and the bottom of the discharge pipe 5042 is exposed. At this time, fertilization can be carried out. When the amount of fertilizer is reached, the first push rod 5045 is adjusted to the initial state, the blocking plate 5044 returns to its original position, and the fertilization is completed.

[0034] By setting up the discharge assembly 504, the discharge pipe 5042 is placed in the movable box 5043. The movable box 5043 drives the blocking plate 5044 to move, thereby controlling the movement of raw materials in the discharge pipe 5042 and thus controlling the amount of fertilizer applied. Furthermore, during the fertilization process, the feed pipe remains in the movable box 5043, which can reduce the impact of strong winds on the fertilization work.

[0035] The lifting mechanism 7 includes: A stretching plate 701 is installed inside the platform 6, and a suction strip is installed at the bottom of the stretching plate 701. The second telescopic component 702 is installed on the top of the platform 6. The second telescopic component 702 is composed of a telescopic column in the vertical direction and a connecting column in the horizontal direction. The third push rod 703 is installed at the bottom of the second telescopic component 702; The disc 704 is installed at the bottom of the third push rod 703. A spring 705 is installed at the bottom of the disc 704. A connecting block 706 is installed at the bottom of the spring 705. An inclined plate 707 is installed at the bottom of the connecting block 706. The inclined plate 707 is made of rubber.

[0036] If the fertilization locations are far apart, the user can manually pull the stretching plate 701 out of the platform 6 and fix the suction strip at the bottom of the stretching plate 701 to the trolley to reinforce the position of the machine body 1. The trolley will then move the machine body 1 to the fertilization location.

[0037] During the fertilization process, the third push rod 703 and the second lifting rod 5031 are opened alternately, and the disc 704 is always in the storage cylinder 501. As the third push rod 703 is opened, it drives the disc 704, spring 705, connecting block 706 and inclined plate 707 to move downward, thereby driving the raw materials to move and reducing the occurrence of raw material clumping.

[0038] When it is necessary to add raw materials to the storage cylinder 501, the telescopic column in the second telescopic component 702 is opened. The telescopic column drives the third push rod 703, the disc 704, the spring 705, the connecting block 706 and the inclined plate 707 to disengage from the storage cylinder 501, and then the raw materials are manually added to the storage cylinder 501.

[0039] By setting up a lifting mechanism 7, the top of the storage cylinder 501 is sealed by a disc 704. By controlling the height of the disc 704, the inclined plate 707 at the bottom of the disc 704 contacts the raw material, driving the raw material to move. The disc 704, in conjunction with the lifting disc 502 at the bottom, drives the raw material to move in two directions alternately, reducing the occurrence of raw material clumping.

[0040] Working Principle: Before using the equipment, select the appropriate operating method for the machine body 1 based on the location of the fertilization in the garden. If the terrain of the fertilization location is flat, the limiting plate 207 can be manually moved. As the limiting plate 207 moves downward within the slide groove 205, it compresses the pad 206, causing the pad 206 to deform. Subsequently, the limiting plate 207 is at the bottom of the slide groove 205 and is locked below the pad 206. At the same time, the limiting plate 207 pulls the tension rod 208, which drives the first adjusting rod 209 and the universal wheel 210 to move downward, and the universal wheel 210 gradually lands. At this time, the user can manually adjust the length of the first telescopic component 8 and manually pull the arc-shaped handle in the first telescopic component 8 to control the position of the machine body 1.

[0041] If there are many weeds and branches at the fertilization location, the user can manually adjust the shoulder strap 203 to carry the machine 1 on their back and move the machine 1 to the fertilization location.

[0042] If the fertilization locations are far apart, the user can manually pull the stretching plate 701 out of the platform 6 and fix the suction strip at the bottom of the stretching plate 701 to the trolley to reinforce the position of the machine body 1. The trolley will then move the machine body 1 to the fertilization location.

[0043] Then adjust the discharge component 504 in the fertilization mechanism 5, and the fertilization work is completed by the discharge component 504.

[0044] Before fertilization, the first push rod 5045 is in its initial state. At this time, the blocking plate 5044 is at the bottom of the discharge pipe 5042. The raw material moves through the inclined pipe 5034 to the second telescopic pipe 5041 and the discharge pipe 5042. Because the blocking plate 5044 blocks the bottom of the discharge pipe 5042, the raw material cannot move downward.

[0045] When fertilizing, the first push rod 5045 is activated, which moves the movable box 5043. The movable box 5043 moves the blocking plate 5044, and the bottom of the discharge pipe 5042 is exposed. At this time, fertilization can be carried out. When the amount of fertilizer is reached, the first push rod 5045 is adjusted to the initial state, the blocking plate 5044 returns to its original position, and the fertilization is completed.

[0046] During the fertilization process, the lifting component 503 and the lifting mechanism 7 in the fertilization mechanism 5 are adjusted so that the lifting component 503 and the lifting mechanism 7 drive the movement of the raw materials and promote the dispersion of the raw materials.

[0047] During fertilization, the lifting plate 502 is at the lowest position inside the storage cylinder 501. The raw materials in the storage cylinder 501 enter the channel through the lifting plate 502, and then enter the first telescopic pipe 5032 through the channel. They then enter the inclined pipe 5034 through the first telescopic pipe 5032, and finally enter the discharge component 504 through the inclined pipe 5034. The fertilization work is completed through the discharge component 504.

[0048] During fertilization, the second lifting rod 5031 is intermittently activated. The second lifting rod 5031 drives the lifting plate 502 upward, which in turn moves the raw materials within the storage cylinder 501, promoting material dispersion. As the lifting plate 502 moves, since the connecting plate 5035 is installed at the bottom of the storage cylinder 501, and the connecting ring 5033 is connected to the outside of the inclined tube 5034, the inclined tube 5034 remains stationary while the lifting plate 502 extends the first telescopic pipe 5032, thus promoting the movement of the raw materials within the first telescopic pipe 5032 and the inclined tube 5034.

[0049] During the fertilization process, the third push rod 703 and the second lifting rod 5031 are opened alternately, and the disc 704 is always in the storage cylinder 501. As the third push rod 703 is opened, it drives the disc 704, spring 705, connecting block 706 and inclined plate 707 to move downward, thereby driving the raw materials to move and reducing the occurrence of raw material clumping.

[0050] After the fertilization work is completed, the fertilization mechanism 5 is adjusted, and the raw materials are added to the storage cylinder 501. The raw materials enter the discharge component 504 through the storage cylinder 501 for the next fertilization work.

[0051] When it is necessary to add raw materials to the storage cylinder 501, the telescopic column in the second telescopic component 702 is opened. The telescopic column drives the third push rod 703, the disc 704, the spring 705, the connecting block 706 and the inclined plate 707 to disengage from the storage cylinder 501, and then the raw materials are manually added to the storage cylinder 501.

[0052] This invention provides a method for using a mobile forestry fertilizer applicator, comprising the following steps: S1. Before using the device, use the adjustment mechanism 2 to choose to place the device on the ground and drag it, carry it on the user's back, or install the device on a trolley. S2. Move the equipment to the fertilization position and adjust the discharge component 504 in the fertilization mechanism 5 so that the discharge component 504 can complete the fertilization work. S3. During the fertilization process, the lifting component 503 and the lifting mechanism 7 in the fertilization mechanism 5 are adjusted so that the lifting component 503 and the lifting mechanism 7 can drive the movement of the raw materials and promote the dispersion of the raw materials. S4. After the fertilization work is completed, adjust the fertilization mechanism 5, add the raw materials into the storage cylinder 501, and the raw materials enter the discharge component 504 through the storage cylinder 501 for the next fertilization work.

[0053] Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. All other embodiments obtained by those skilled in the art and related fields based on the embodiments of the present invention without inventive effort should fall within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described and explained in the present invention, unless otherwise specified or limited, shall be implemented according to conventional means in the art.

Claims

1. A mobile forestry fertilizer applicator, comprising a body (1), characterized in that: Card slot (3), the card slot (3) is opened inside the body (1); The card holder (4) is installed inside the card slot (3) by screws; A platform (6) is mounted on top of the body (1); Adjustment mechanism (2), the adjustment mechanism (2) is located outside the body (1), the adjustment mechanism (2) includes a limiting plate (207) and a universal wheel (210), the limiting plate (207) is used to drive the universal wheel (210) to rise and fall; The fertilizer application mechanism (5) is connected to the positioning frame (4). The fertilizer application mechanism (5) includes a storage cylinder (501). The storage cylinder (501) is connected to the positioning frame (4). A lifting component (503) is provided inside the storage cylinder (501). A discharge component (504) is provided outside the lifting component (503). The lifting component (503) is used to drive the raw materials in the storage cylinder (501) to rise and fall.

2. The mobile forestry fertilizer applicator according to claim 1, characterized in that: Also includes: The first telescopic component (8) is installed on the top of the platform (6); Lifting mechanism (7), which is installed on the top of the platform (6), is used to seal the storage cylinder (501).

3. The mobile forestry fertilizer applicator according to claim 1, characterized in that: The adjustment mechanism (2) further includes: A groove (201) is formed inside the body (1); A patch (202) is installed inside the groove (201), and multiple patches (202) are provided and evenly distributed; Adjustable shoulder straps (203) are installed on the outside of the body (1). There are two adjustable shoulder straps (203) installed and they are arranged symmetrically.

4. The mobile forestry fertilizer applicator according to claim 3, characterized in that: The adjustment mechanism (2) further includes: Through slot (204), the through slot (204) is opened at the bottom of the body (1), and there are two through slots (204) and they are arranged symmetrically; The slide (205) is opened on the side of the body (1). There are two slides (205) and they are symmetrically arranged. The limiting plate (207) is slidably connected to the inside of the slide (205). Gasket (206), the gasket (206) is installed on the outside of the body (1), and multiple gaskets (206) are provided and are evenly distributed; A tension rod (208) is connected to a limiting plate (207). A first adjusting rod (209) is installed at the bottom of the tension rod (208), and a caster wheel (210) is installed at the bottom of the first adjusting rod (209).

5. The mobile forestry fertilizer applicator according to claim 1, characterized in that: The fertilization mechanism (5) also includes: The lifting plate (502) is slidably connected to the inside of the storage cylinder (501), the lifting plate (502) is connected to the lifting assembly (503), and the inside of the lifting plate (502) has a channel. The first lifting rod (506) is installed inside the body (1). A base plate (505) is installed on the top of the first lifting rod (506), and the base plate (505) is connected to the lifting assembly (503).

6. The mobile forestry fertilizer applicator according to claim 5, characterized in that: The lifting assembly (503) includes: The second lifting rod (5031) is installed on the top of the base plate (505) and is connected to the lifting plate (502); The first telescopic pipe (5032) is connected to the bottom of the lifting plate (502); A connecting ring (5033) is installed on the outside of the first telescopic pipe (5032); An inclined tube (5034) is connected to a first telescopic tube (5032); A connecting plate (5035) is connected to a connecting ring (5033) and is installed at the bottom of the storage cylinder (501).

7. The mobile forestry fertilizer applicator according to claim 6, characterized in that: The discharge assembly (504) includes: The second telescopic pipe (5041) is installed outside the inclined pipe (5034); The discharge pipe (5042) is installed at the bottom of the second telescopic pipe (5041); An annular connecting plate (5046) is installed outside the second telescopic pipe (5041). A second push rod (5047) is installed outside the annular connecting plate (5046). The fixed end of the second push rod (5047) is installed outside the machine body (1). The first push rod (5045) is mounted on the outside of the annular connecting plate (5046); A movable box (5043) is installed outside the first push rod (5045). The movable box (5043) is slidably connected to the second telescopic pipe (5041). A blocking plate (5044) is installed at the bottom of the movable box (5043).

8. The mobile forestry fertilizer applicator according to claim 2, characterized in that: The lifting mechanism (7) includes: A stretching plate (701) is installed inside the platform (6); The second telescopic component (702) is installed on the top of the platform (6); The third push rod (703) is installed at the bottom of the second telescopic member (702); A disc (704) is mounted on the bottom of a third push rod (703). A spring (705) is mounted on the bottom of the disc (704). A connecting block (706) is mounted on the bottom of the spring (705). An inclined plate (707) is mounted on the bottom of the connecting block (706).

9. A method of using a mobile forestry fertilizer applicator, characterized in that, Includes the following steps: S1. Before using the equipment, use the adjustment mechanism (2) to choose to place the equipment on the ground and drag it or carry it on the user's back to install the equipment on the cart. S2. Move the equipment to the fertilization position and adjust the discharge component (504) in the fertilization mechanism (5) so that the discharge component (504) can complete the fertilization work. S3. During the fertilization process, adjust the lifting component (503) and lifting mechanism (7) in the fertilization mechanism (5). The lifting component (503) and lifting mechanism (7) drive the movement of raw materials to promote the dispersion of raw materials. S4. After the fertilization work is completed, adjust the fertilization mechanism (5) and add the raw materials into the storage cylinder (501). The raw materials enter the discharge component (504) through the storage cylinder (501) for the next fertilization work.

Citation Information

Patent Citations

  • A mobile forestry fertilizer applicator

    CN220935622U