A fertilizing device suitable for high-viscosity organic fertilizer

By setting a fertilizer scraper in the fertilizing equipment to peel off the sticky organic fertilizer, the problems of blockage and inaccuracy in the transmission of high-viscosity organic fertilizer are solved, and accurate mixing and uniform fertilization of high-viscosity organic fertilizer and inorganic fertilizer are achieved.

CN115708437BActive Publication Date: 2025-09-30NINGXIA ACADEMY OF AGRICULTURE AND FORESTRY SCIENCES INSTITUTE OF HORTICULTURE (NINGXIA FACILITY AGRICULTURE ENGINEERING TECHNOLOGY RESEARCH CENTER)
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Patent Information

Application Number
CN202211398429.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-09
Publication Date
2025-09-30
Estimated Expiration
2042-11-09

AI Technical Summary

Technical Problem

In the prior art, high-viscosity organic fertilizers tend to stick to the fertilizer discharging device, causing blockage of the fertilizer outlet or inaccurate fertilization.

Method used

A fertilizing device suitable for high-viscosity organic fertilizer is designed, which includes an organic fertilizer storage box, an inorganic fertilizer storage box and a transmission mechanism. A fertilizer scraper is provided in the transmission mechanism to peel off the organic fertilizer stuck on the transmission mechanism, ensuring that the organic fertilizer and inorganic fertilizer are mixed and evenly transported.

Benefits of technology

It effectively solves the problem of high-viscosity organic fertilizer sticking during transportation, achieves precise mixing and uniform fertilization of organic fertilizer and inorganic fertilizer, avoids blockage of fertilizer outlet, and improves fertilization efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to a fertilizing device suitable for high-viscosity organic fertilizer, comprising an organic fertilizer storage box, an inorganic fertilizer storage box, a transmission mechanism, and a base. The inorganic fertilizer storage box and the organic fertilizer storage box are sequentially arranged on the base along a first direction. The organic fertilizer storage box has a first opening and a first inner cavity that are connected, and the inorganic fertilizer storage box has a second opening and a third opening that are opposite to each other. The inorganic fertilizer storage box also has a second inner cavity, with the first opening facing the second opening. The transmission mechanism includes a first section and a second section that are connected. The first section extends into the first inner cavity through the third opening, the second opening, and the first opening in sequence. The second section is at least partially located in the second inner cavity. A first fertilizer scraper is provided in the second inner cavity adjacent to the third opening, and the first fertilizer scraper contacts the second section. The above solution can solve the problem that organic fertilizer is sticky and easily sticks to the fertilizer discharging device, thereby causing blockage of the fertilizer outlet or inaccurate fertilization.
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Description

Technical Field

[0001] The invention relates to the technical field of fertilization, in particular to a fertilization device suitable for high-viscosity organic fertilizer. Background Art

[0002] Crop fertilization is a critical step in crop production. Fertilization refers to the agricultural practice of applying fertilizer to the soil or spraying it on plants to provide nutrients and maintain and improve soil fertility. The primary goals of fertilization are to increase crop yields, improve crop quality, enhance soil fertility, and increase economic returns. Therefore, rational and scientific fertilization is one of the key means of ensuring food security and maintaining sustainable agricultural development.

[0003] In the related art, the Chinese invention with patent number 202111062069.3 provides an intelligent orchard self-propelled double-row furrowing fertilizer spreader and fertilization method, wherein the power device provides power to the furrowing system and the fertilizer discharge system, and also serves as the power for the equipment to move forward; the control system controls the power output of the crawler transmission system and controls the adjustment of the operating parameters of the furrowing system and the fertilizer discharge system; the navigation system and the control system control the forward trajectory of the equipment, and the above-mentioned equipment can pass through the two organic fertilizer conveyors under the two discharge ports of the organic fertilizer box; the chemical fertilizer conveyor is an auger-type fertilizer discharger, and the organic fertilizer conveyor is a scraper-type fertilizer discharger. The auger-type fertilizer discharger is connected to the auger motor, and the auger motor is powered by a power supply. The auger motor drives the auger-type fertilizer discharger to rotate, and the scraper-type fertilizer discharger is driven to rotate by a hydraulic motor to achieve precise quantitative discharge of organic fertilizer and chemical fertilizer, thereby saving manpower and improving fertilization efficiency. However, due to the stickiness of organic fertilizer, it is easy to stick to the fertilizer discharge device, resulting in inaccurate fertilizer application. Summary of the Invention

[0004] Based on this, a fertilizing device suitable for high-viscosity organic fertilizer is provided to solve the problem that organic fertilizer is sticky and easily sticks to the fertilizer discharge device, thereby causing blockage of the fertilizer outlet or inaccurate fertilization.

[0005] A fertilizing device suitable for high-viscosity organic fertilizer includes an organic fertilizer storage box, an inorganic fertilizer storage box, a transmission mechanism and a base. Along a first direction, the inorganic fertilizer storage box and the organic fertilizer storage box are sequentially arranged on the base, the organic fertilizer storage box is provided with a first opening and a first inner cavity that are connected, the inorganic fertilizer storage box is provided with a second opening and a third opening that are opposite to each other, the inorganic fertilizer storage box is also provided with a second inner cavity, the first opening is opposite to the second opening, the transmission mechanism includes a connected first section and a second section, the first section sequentially passes through the third opening, the second opening and the first opening to extend into the first inner cavity, the second section is at least partially located in the second inner cavity, the second inner cavity is adjacent to the third opening and is provided with a first fertilizer scraper, the first fertilizer scraper is in contact with the second section, wherein the first direction is consistent with the transmission direction of the transmission mechanism.

[0006] Preferably, in the above-mentioned fertilizing equipment suitable for high-viscosity organic fertilizer, the first fertilizer scraping member includes a plurality of fertilizer scraping wires, one of the plurality of fertilizer scraping wires is in contact with the second section, and the plurality of fertilizer scraping wires are spaced apart along a second direction, and the second direction intersects with the first direction.

[0007] Preferably, in the above-mentioned fertilizing equipment suitable for high-viscosity organic fertilizer, the first fertilizer scraping member is a fertilizer scraping plate, and the fertilizer scraping plate is in contact with the second section.

[0008] Preferably, in the above-mentioned fertilizing equipment suitable for high-viscosity organic fertilizer, a second fertilizer scraper is provided in the first inner cavity adjacent to the first opening, and the second fertilizer scraper is in contact with the first section.

[0009] Preferably, in the above-mentioned fertilizing equipment suitable for high-viscosity organic fertilizer, a limit plate is provided on the end surface of the first opening facing the first inner cavity, and the limit plate and the bearing surface of the first section form a discharge channel.

[0010] Preferably, the above-mentioned fertilizing equipment suitable for high-viscosity organic fertilizer further includes a first driving member and an auger-type fertilizer discharge member, wherein the first driving member is arranged in the inorganic fertilizer storage box, the first driving member and the auger-type fertilizer discharge member are connected, the auger-type fertilizer discharge member is rotatably arranged in the second inner cavity, and the first driving member can drive the auger-type fertilizer discharge member to rotate.

[0011] Preferably, in the above-mentioned fertilizing equipment suitable for high-viscosity organic fertilizer, the second inner cavity is provided with a first guide plate and a second guide plate, the first guide plate and the second guide plate form a storage space, and the auger-type fertilizer discharge member is located in the storage space.

[0012] Preferably, the above-mentioned fertilizing equipment suitable for high-viscosity organic fertilizer, the transmission mechanism includes a drive motor, a chain plate, a first drive assembly and a first driven assembly, the chain plate is engaged with the first drive assembly and the first driven assembly, the drive motor is arranged on the base, the drive motor is connected to the first drive assembly, the first drive assembly is rotatably arranged on the inorganic fertilizer storage box, the first driven assembly is rotatably arranged on the organic fertilizer storage box, one end of the chain plate sequentially passes through the third opening, the second opening and the first opening to extend into the first inner cavity, the other end of the chain plate is at least partially located in the second inner cavity, the drive motor can drive the first drive assembly to rotate, and the chain plate and the first driven assembly can both rotate with the first drive assembly.

[0013] Preferably, the above-mentioned fertilizing equipment suitable for high-viscosity organic fertilizer, the transmission mechanism includes a drive motor, a belt, a first drive assembly and a first driven assembly, the belt is rotatably matched with the first drive assembly and the first driven assembly, the drive motor is arranged on the base, the drive motor is connected to the first drive assembly, the first drive assembly is rotatably arranged on the inorganic fertilizer storage box, the first driven assembly is rotatably arranged on the organic fertilizer storage box, one end of the belt passes through the third opening, the second opening and the first opening in sequence to extend into the first inner cavity, the other end of the belt is at least partially located in the second inner cavity, the drive motor can drive the first drive assembly to rotate, and the belt and the first driven assembly can both rotate with the first drive assembly.

[0014] Preferably, in the above-mentioned fertilizing equipment suitable for high-viscosity organic fertilizer, a material guide plate is provided in the first inner cavity, and the material guiding direction of the material guide plate intersects with the first direction, and the angle formed is greater than 100°.

[0015] The technical solution adopted in this application can achieve the following beneficial effects:

[0016] In a fertilizing device suitable for high-viscosity organic fertilizer disclosed in the present application, an inorganic fertilizer storage tank and an organic fertilizer storage tank are sequentially arranged on a base, the organic fertilizer storage tank having a first opening and a first inner cavity in communication, the inorganic fertilizer storage tank having a second opening and a third opening opposite each other, the inorganic fertilizer storage tank also having a third inner cavity 230, the first opening being opposite the second opening, and a transmission mechanism comprising a first section and a second section connected to each other, the first section extending through the third opening, the second opening, and the first opening in sequence into the first inner cavity, the second section being at least partially located in the third inner cavity, and a first fertilizer scraper disposed in the third inner cavity adjacent to the third opening, the first fertilizer scraper contacting the second section. The above structure carries organic fertilizer through the first section and transports it in a first direction to the second section, where the organic fertilizer and inorganic fertilizer are mixed, and the mixed organic fertilizer and inorganic fertilizer are transported to the third opening in the second section. Due to the contact between the first fertilizer scraper and the second section, the first fertilizer scraper can peel off organic fertilizer stuck in the second section, thereby scraping off organic fertilizer stuck in the transmission mechanism, thereby resolving problems such as fertilizer outlet blockage and inaccurate fertilization. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a schematic structural diagram of a fertilizing device suitable for high-viscosity organic fertilizer disclosed in an embodiment of the present application;

[0018] Figure 2 A top view of a fertilizing device suitable for high-viscosity organic fertilizer disclosed in an embodiment of the present application;

[0019] Figure 3 for Figure 2 A cross-sectional view at an angle;

[0020] Figure 4 for Figure 2 A cross-sectional view at another angle.

[0021] Among them: organic fertilizer storage box 100, first opening 110, first inner cavity 120, guide plate 130, limit plate 140, inorganic fertilizer storage box 200, second opening 210, third opening 220, third inner cavity 230, first guide plate 240, second guide plate 250, transmission mechanism 300, drive motor 310, first drive assembly 320, first driven assembly 330, belt 340, base 400, first fertilizer scraper 500, second fertilizer scraper 600, first drive member 700, auger type fertilizer discharge member 800. DETAILED DESCRIPTION

[0022] To facilitate understanding of the present invention, the present invention will be described more fully below with reference to the accompanying drawings. The accompanying drawings illustrate preferred embodiments of the present invention. However, the present invention may be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the present disclosure.

[0023] It should be noted that when an element is referred to as being "disposed on" another element, it may be directly on the other element or there may be an element centered thereon. When an element is referred to as being "connected to" another element, it may be directly connected to the other element or there may be an element centered thereon. The terms "vertical," "horizontal," "left," "right," "top," "bottom," "bottom end," "top end," and similar expressions used herein are for illustrative purposes only and do not represent the only implementation methods.

[0024] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which this invention pertains. The terms used in this specification of the present invention are for the purpose of describing specific embodiments only and are not intended to limit the present invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0025] Please refer to Figures 1 to 4 The present application discloses a fertilizing device suitable for high-viscosity organic fertilizer. The disclosed fertilizing device includes an organic fertilizer storage box 100, an inorganic fertilizer storage box 200, a transmission mechanism 300 and a base 400.

[0026] The organic fertilizer storage box 100 is a functional component for storing organic fertilizer in a fertilizing device for applying high-viscosity organic fertilizer. The inorganic fertilizer storage box 200 is a functional component for storing inorganic fertilizer in a fertilizing device for applying high-viscosity organic fertilizer. The transmission mechanism 300 is a functional component for conveying organic fertilizer in a fertilizing device for applying high-viscosity organic fertilizer. The base 400 can provide an installation foundation for the inorganic fertilizer storage box 200 and the organic fertilizer storage box 100.

[0027] Specifically, along the first direction, the inorganic fertilizer storage box 200 and the organic fertilizer storage box 100 are sequentially arranged on the base 400, the organic fertilizer storage box 100 is provided with a first opening 110 and a first inner cavity 120 that are in communication, the inorganic fertilizer storage box 200 is provided with a second opening 210 and a third opening 220 that are opposite to each other, the inorganic fertilizer storage box 200 is further provided with a third inner cavity 230, the first opening 110 is opposite to the second opening 210, the transmission mechanism 300 includes a first segment and a second segment connected, the first segment sequentially passes through the third opening 220, the second opening 210 and the first opening 110 to extend into the first inner cavity 120, the second segment is at least partially located in the third inner cavity 230, the third inner cavity 230 is adjacent to the third opening 220 and is provided with a first fertilizer scraper 500, the first fertilizer scraper 500 is in contact with the second segment, wherein the first direction is consistent with the transmission direction of the transmission mechanism 300.

[0028] During the use of the fertilizing equipment, organic fertilizer is stored in the first inner cavity 120, and inorganic fertilizer is stored in the third inner cavity 230. The first section carries the organic fertilizer and transports it to the second section along the first direction. The organic fertilizer and inorganic fertilizer are mixed in the second section. The mixed organic fertilizer and inorganic fertilizer are transported to the third opening 220 in the second section. Since the first fertilizer scraper 500 is in contact with the second section, the first fertilizer scraper 500 can peel off the organic fertilizer stuck in the second section, so that the organic fertilizer and inorganic fertilizer can fall out from the third opening 220.

[0029] In the fertilizing equipment suitable for high-viscosity organic fertilizer disclosed in the present application, the inorganic fertilizer storage box 200 and the organic fertilizer storage box 100 are sequentially arranged on the base 400, the organic fertilizer storage box 100 is provided with a first opening 110 and a first inner cavity 120 that are connected, the inorganic fertilizer storage box 200 is provided with a second opening 210 and a third opening 220 that are opposite to each other, the inorganic fertilizer storage box 200 is further provided with a third inner cavity 230, the first opening 110 is opposite to the second opening 210, the transmission mechanism 300 includes a first section and a second section that are connected, the first section sequentially passes through the third opening 220, the second opening 210 and the first opening 110 to extend into the first inner cavity 120, the second section is at least partially located in the third inner cavity 230, the third inner cavity 230 is adjacent to the third opening 220 and is provided with a first fertilizer scraper 500, and the first fertilizer scraper 500 is in contact with the second section. The above structure carries the organic fertilizer through the first section and transports it to the second section along the first direction, where the organic fertilizer is mixed with the inorganic fertilizer, and the mixed organic fertilizer and inorganic fertilizer are transported to the third opening 220 in the second section. Since the first fertilizer scraper 500 is in contact with the second section, the first fertilizer scraper 500 can peel off the organic fertilizer stuck in the second section, thereby achieving the goal of scraping off the organic fertilizer stuck on the transmission mechanism 300, thereby improving the inaccurate fertilization amount of the fertilizing equipment suitable for high-viscosity organic fertilizer.

[0030] In an optional solution, the first fertilizer scraping member 500 may include a plurality of fertilizer scraping wires, specifically, one of the plurality of fertilizer scraping wires may be in contact with the second section, and the plurality of fertilizer scraping wires may be spaced apart along the second direction, wherein the second direction intersects with the first direction. The above structure peels off the organic fertilizer stuck to the second section by one of the plurality of fertilizer scraping wires, and at the same time, the remaining plurality of fertilizer scraping wires are used to flip the organic fertilizer to cover the inorganic fertilizer, thereby preventing the inorganic fertilizer from falling outside the third opening 220 and being blown away by the wind in the external environment. At the same time, the plurality of fertilizer scraping wires can cut and crush the block organic fertilizer, so that the organic fertilizer can be used with the greatest effect, wherein the intervals between the plurality of fertilizer scraping wires can be adjusted according to actual needs, for example, the intervals between the plurality of fertilizer scraping wires can be 5 cm, 10 cm, etc., and this application does not impose any restrictions on this.

[0031] In another optional solution, the first fertilizer scraping member 500 can be a fertilizer scraping plate, and specifically, the fertilizer scraping plate can be in contact with the second section. In the above structure, there are fewer parts, a simple structure, and easy installation.

[0032] In an embodiment of the present application, a second fertilizer scraper 600 may be provided in the first inner cavity 120 adjacent to the first opening 110. Specifically, the second fertilizer scraper 600 may be in contact with the first section, thereby preventing organic fertilizer from accumulating on the first section and causing excessive sticking, thereby reducing the stickiness of the organic fertilizer on the transmission mechanism 300, thereby improving the stripping effect of the first fertilizer scraper 500 on the organic fertilizer transported to the second section.

[0033] Of course, the second scraper 600 may also be a scraper plate or a plurality of scraper wires, and this application does not impose any limitation on this.

[0034] In addition, the scraping wire can be a steel wire, a columnar spring, etc., and this application does not impose any restrictions on this.

[0035] In the embodiment of the present application, a limiting plate 140 may be provided on the end surface of the first opening 110 facing the first inner cavity 120 . Specifically, the limiting plate 140 may form a discharge channel together with the bearing surface of the first section.

[0036] During the use of a fertilizing device suitable for high-viscosity organic fertilizer, organic fertilizer is stored in the first inner cavity 120, and inorganic fertilizer is stored in the third inner cavity 230. The first section carries the organic fertilizer and transports it to the second section along the first direction. When the organic fertilizer is transported to the second section along the first direction, the limit plate 140 in the discharge channel will limit the flow rate of the organic fertilizer, thereby achieving uniform discharge of the organic fertilizer.

[0037] In an embodiment of the present application, the fertilizing equipment may further include a first driving member 700 and an auger-type fertilizer discharge member 800. Specifically, the first driving member 700 may be disposed in the inorganic fertilizer storage box 200. The first driving member 700 may be connected to the auger-type fertilizer discharge member 800. The auger-type fertilizer discharge member 800 may be rotatably disposed in the third inner cavity 230. The first driving member 700 may drive the auger-type fertilizer discharge member 800 to rotate. The above structure enables the inorganic fertilizer to be evenly covered on the organic fertilizer by the first driving member 700 driving the auger-type fertilizer discharge member 800 to rotate, thereby facilitating a proportional combination of organic fertilizer and inorganic fertilizer. The first driving member 700 may be a driving cylinder, a driving motor 310, etc., and this application does not impose any restrictions on this.

[0038] In a further technical solution, the third inner cavity 230 can be provided with a first guide plate 240 and a second guide plate 250. Specifically, the first guide plate 240 and the second guide plate 250 form a storage space, and the auger-type fertilizer discharge component 800 is located in the storage space. The first guide plate 240 and the second guide plate 250 can accumulate inorganic fertilizers in the storage space, so that the auger-type fertilizer discharge component 800 can uniformly process the inorganic fertilizers.

[0039] In an optional scheme, the transmission mechanism 300 may include a drive motor 310, a chain plate, a first drive assembly 320 and a first driven assembly 330. Specifically, the chain plate may be engaged with the first drive assembly 320 and the first driven assembly 330. The drive motor 310 may be disposed on the base 400. The drive motor 310 may be connected to the first drive assembly 320. The first drive assembly 320 may be rotatably disposed on the inorganic fertilizer storage box 200. The first driven assembly 330 may be rotatably disposed on the organic fertilizer storage box 100. One end of the chain plate sequentially passes through the third opening 220, the second opening 210 and the first opening 110 to extend into the first inner cavity 120. The other end of the chain plate is at least partially located in the third inner cavity 230. The drive motor 310 may drive the first drive assembly 320 to rotate, and the chain plate and the first driven assembly 330 may both rotate with the first drive assembly 320.

[0040] Of course, the above-mentioned first drive assembly 320 may include a connected drive shaft and a transmission gear, the drive motor 310 may be connected to the drive shaft, the transmission gear is located in the first inner cavity 120, and one end of the chain plate may be engaged with the transmission gear. Similarly, the first driven assembly 330 may include a connected driven shaft and a driven gear, the driven gear is located in the third inner cavity 230, and the other end of the chain plate may be engaged with the driven gear.

[0041] In another optional scheme, the transmission mechanism 300 may include a drive motor 310, a belt 340, a first drive assembly 320 and a first driven assembly 330. Specifically, the belt 340 can be rotatably matched with the first drive assembly 320 and the first driven assembly 330. The drive motor 310 can be arranged on the base 400. The drive motor 310 can be connected to the first drive assembly 320. The first drive assembly 320 is rotatably arranged on the inorganic fertilizer storage box 200. The first driven assembly 330 is rotatably arranged on the organic fertilizer storage box 100. One end of the belt 340 passes through the third opening 220, the second opening 210 and the first opening 110 in sequence to extend into the first inner cavity 120. The other end of the belt 340 is at least partially located in the third inner cavity 230. The drive motor 310 can drive the first drive assembly 320 to rotate, and the belt 340 and the first driven assembly 330 can both rotate with the first drive assembly 320.

[0042] Of course, the above-mentioned first drive component 320 may include a connected drive shaft and a transmission roller, the drive motor 310 may be connected to the drive shaft, the transmission roller is located in the first inner cavity 120, and one end of the belt 340 may roll with the drive roller. Similarly, the first driven component 330 may include a connected driven shaft and a driven roller, the driven roller is located in the third inner cavity 230, and the other end of the belt 340 may roll with the driven roller.

[0043] In the embodiment of the present application, a guide plate 130 may be provided in the first inner cavity 120. The guide direction of the guide plate 130 intersects with the first direction and forms an angle greater than 100 degrees. The above structure guides the organic fertilizer to the first section through the guide plate 130.

[0044] The technical features of the above embodiments can be combined arbitrarily. To make the description concise, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0045] The above-described embodiments merely illustrate several implementations of the present invention, and while their descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent. It should be noted that a person skilled in the art would be able to make numerous variations and improvements without departing from the spirit of the present invention, all of which fall within the scope of protection of the present invention. Therefore, the scope of protection of the patent for this invention shall be determined by the appended claims.

Claims

1. A fertilizing device suitable for high-viscosity organic fertilizer, characterized in that: The fertilizer storage box includes an organic fertilizer storage box, an inorganic fertilizer storage box, a transmission mechanism and a base. In a first direction, the inorganic fertilizer storage box and the organic fertilizer storage box are sequentially arranged on the base. The organic fertilizer storage box is provided with a first opening and a first inner cavity that are connected, and the inorganic fertilizer storage box is provided with a second opening and a third opening that are opposite to each other. The inorganic fertilizer storage box also has a second inner cavity. The first opening is opposite to the second opening. The transmission mechanism includes a connected first section and a second section. The first section sequentially passes through the third opening, the second opening and the first opening and extends into the first inner cavity. The second section is at least partially located in the second inner cavity. The second inner cavity is adjacent to the third opening and is provided with a first fertilizer scraping member. The first fertilizer scraping member includes a plurality of fertilizer scraping wires. The plurality of fertilizer scraping wires are selected from one of steel wires or columnar springs. One of the plurality of fertilizer scraping wires is in contact with the second section. The plurality of fertilizer scraping wires are spaced apart along the second direction. The first direction is consistent with the transmission direction of the transmission mechanism, and the second direction intersects with the first direction.

2. The fertilizing equipment according to claim 1, characterized in that The first inner cavity is provided with a second fertilizer scraper adjacent to the first opening, and the second fertilizer scraper is in contact with the first section.

3. The fertilizing equipment according to claim 1, characterized in that A limiting plate is provided on the end surface of the first opening facing the first inner cavity, and the limiting plate and the bearing surface of the first section form a discharge channel.

4. The fertilizing equipment according to claim 1, characterized in that The fertilizing equipment suitable for high-viscosity organic fertilizer also includes a first driving member and an auger-type fertilizer discharge member. The first driving member is arranged in the inorganic fertilizer storage box. The first driving member is connected to the auger-type fertilizer discharge member. The auger-type fertilizer discharge member is rotatably arranged in the second inner cavity. The first driving member can drive the auger-type fertilizer discharge member to rotate.

5. The fertilizing equipment according to claim 4, characterized in that: The second inner cavity is provided with a first guide plate and a second guide plate, the first guide plate and the second guide plate form a storage space, and the auger-type fertilizer discharge member is located in the storage space.

6. The fertilizing equipment according to claim 1, characterized in that The transmission mechanism includes a drive motor, a chain plate, a first drive assembly and a first driven assembly. The chain plate is engaged with the first drive assembly and the first driven assembly. The drive motor is arranged on the base. The drive motor is connected to the first drive assembly. The first drive assembly is rotatably arranged on the inorganic fertilizer storage box. The first driven assembly is rotatably arranged on the organic fertilizer storage box. One end of the chain plate passes through the third opening, the second opening and the first opening in sequence to extend into the first inner cavity. The other end of the chain plate is at least partially located in the second inner cavity. The drive motor can drive the first drive assembly to rotate, and the chain plate and the first driven assembly can both rotate with the first drive assembly.

7. The fertilizing equipment according to claim 1, characterized in that The transmission mechanism includes a drive motor, a belt, a first drive assembly and a first driven assembly. The belt is rotatably matched with the first drive assembly and the first driven assembly. The drive motor is arranged on the base. The drive motor is connected to the first drive assembly. The first drive assembly is rotatably arranged on the inorganic fertilizer storage box. The first driven assembly is rotatably arranged on the organic fertilizer storage box. One end of the belt passes through the third opening, the second opening and the first opening in sequence to extend into the first inner cavity. The other end of the belt is at least partially located in the second inner cavity. The drive motor can drive the first drive assembly to rotate, and the belt and the first driven assembly can both rotate with the first drive assembly.

8. The fertilizing equipment according to claim 1, characterized in that: A material guide plate is provided in the first inner cavity, and a material guiding direction of the material guide plate intersects with the first direction, and the angle formed is greater than 100°.

Citation Information

Patent Citations

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