Tomato cultivation support with selenium-rich microbial inoculum irrigation function

By designing the coordination between the support mechanism and the irrigation mechanism, the problems of uneven illumination and manual irrigation in the tomato cultivation support are solved, uniform illumination and automatic irrigation of the tomato seeds are achieved, and the practicality of the cultivation support is improved.

CN223428949UActive Publication Date: 2025-10-14XIAN XINXING AGRICULTURAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422325552.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-10-14
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

Existing tomato cultivation supports have the problem of uneven lighting, resulting in insufficient light for tomato seeds in the bottom culture dish, and the irrigation method relies on manual operation, which increases the workload of farmers and reduces the practicality of the cultivation support.

Method used

A tomato cultivation stand with a support mechanism and an irrigation mechanism was designed. The servo motor drives the transmission rod to rotate the tripod, so that the culture dishes are distributed in a fan shape to ensure uniform lighting. The telescopic plate and gear rack mechanism are used to automatically irrigate the selenium-rich bacterial agent, reducing manual operation.

Benefits of technology

Uniform lighting and automatic irrigation of tomato seeds in the culture dish are achieved, which reduces the workload of farmers and improves the practicality of the cultivation support.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cultivation supports, in particular to a tomato cultivation support with a selenium-enriched microbial inoculum irrigation function, which comprises a base, a support mechanism is rotatably connected to the top end of the base and comprises a servo motor, and the servo motor is fixedly mounted at one end of the top end of the base. One end of the servo motor is rotationally connected with a transmission rod and penetrates through the base to the interior of the base, and irrigation mechanisms are fixedly installed on the two sides of the base, penetrate through the interior of the base and are slidably connected to the top end of the base. According to the utility model, the tomato seeds in the culture dish on the bracket can be fully illuminated through the mutual matching of the internal part bracket of the bracket mechanism, the growth state of the tomato seeds is ensured, and the automatic irrigation operation of the tomato seeds in the culture dish can be completed through the mutual matching of the internal parts of the irrigation mechanism; therefore, the farming amount of farmers is reduced, and the practicability of the cultivation support is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of cultivation support, specifically relates to a tomato cultivation support with selenium-rich bacterial agent irrigation function. BACKGROUND

[0002] Tomato is also called Lycopersicon Esculentum, which is originally from South America and widely cultivated in the north and south of China. The fruit of tomato is rich in nutrition and has special flavor, which is deeply loved by people. In the farm, a large number of tomato seeds are usually sowed in the tomato cultivation device for unified cultivation.

[0003] The existing cultivation device is generally composed of a cultivation support and a culture dish, and a plurality of culture dishes are stacked and fixedly installed on the cultivation support, so that the cultivation device occupies a small space and can meet the cultivation of a large number of tomato seeds.

[0004] However, there are some deficiencies between the existing culture support and the culture dish. When the culture dishes are stacked and placed on the culture support, the seeds in the top culture dish can receive sufficient light, so that the tomato seeds in the top culture dish grow well. The bottom culture dish is blocked by the upper culture dishes, so that the tomato seeds in the bottom culture dish cannot receive sufficient light, thereby affecting the development of the tomato seeds in the bottom culture dish. At the same time, the tomato seeds on the cultivation support need to be irrigated with selenium-rich bacterial agent liquid to improve the disease resistance and yield of the tomato seeds. However, the existing irrigation method is manually irrigated on the tomato seeds on the cultivation support, which greatly increases the workload of farmers in the cultivation greenhouse, and the practicality of the cultivation support is low.

[0005] Therefore, it is necessary to provide a tomato cultivation support with selenium-rich bacterial agent irrigation function to solve the above problems. CONTENT OF THE UTILITY MODEL

[0006] The utility model aims at providing a tomato cultivation support with selenium-rich bacterial agent irrigation function, which can make the tomato seeds in the culture dishes on the support receive sufficient light through the mutual cooperation of the internal parts of the support mechanism, ensure the growth state, and complete the automatic irrigation operation of the tomato seeds in the culture dishes through the mutual cooperation between the internal parts of the irrigation mechanism, thereby reducing the workload of farmers and improving the practicality of the cultivation support. The irrigation method in the prior art is manually irrigated on the tomato seeds on the cultivation support, which greatly increases the workload of farmers in the cultivation greenhouse, and the practicality of the cultivation support is low.

[0007] In order to achieve the above object, the utility model provides following technical scheme: a tomato cultivation support with selenium -rich bacteria agent irrigation function, including the base, the top end of base rotatory connection has the support mechanism, irrigation mechanism is installed fixed with both sides of base, and it is through to the inside of base, and it is sliding connection in the top end of base,

[0008] The support mechanism includes a servo motor, the servo motor is installed fixed on one end of the top end of the base, one end of the servo motor is rotatably connected with a transmission rod, and the transmission rod penetrates the base to the inside of the base, a support rod is connected and fixed around the outer wall of the transmission rod, and is located at one end of the transmission rod away from the servo motor, a connecting ring is installed and fixed on the outer wall of the support rod, and is located at the top end of the base, a plurality of tripods are rotatably connected around the inner wall of the connecting ring, and are located between the connecting rings, a culture dish is installed and fixed between the plurality of tripods, and is located above the base,

[0009] The irrigation mechanism includes an irrigation device, the irrigation device has a plurality of, a plurality of irrigation devices are installed and fixed on the top end of the base, and are located on both sides of the culture dish, a water inlet pipe is connected and fixed on both sides of the base, and penetrates the base to the inside of the irrigation device, a telescopic plate is slidingly connected on the top end of the base, penetrates the inside of the base, and is located at the bottom end of the connecting ring, a support plate is connected and fixed on the bottom end of the telescopic plate penetrating the inside of the base, and is slidingly connected in the inside of the base, a telescopic spring is connected and fixed on the bottom end of the support plate, a rack is connected and fixed on both sides of the top end of the support plate, one end of the rack is provided with a support shaft, and is rotatably connected in the inside of the base, a connecting gear is sleeved on the outer wall of the support shaft, and is in close contact with the outer wall of the support shaft, a sealing partition plate is connected and fixed on the side of the support shaft away from the rack, and penetrates the inner wall of the water inlet pipe.

[0010] Preferably, the top end of the base is provided with a support groove matched with the connecting ring, the tripods are rotatably connected with the connecting ring through bearings, and the transmission rod is provided with a speed reducer at the connection position with the servo motor.

[0011] Preferably, the inside of the base is provided with a telescopic groove matched with the telescopic plate, the outer wall of the connecting ring is provided with a connecting groove matched with the telescopic plate, the top end of the telescopic plate is provided with a circular surface in contact with the connecting groove of the connecting ring, and a plurality of irrigation nozzles are installed on one end of the irrigation device close to the culture dish.

[0012] Preferably, the rack is intermeshed with the connecting gear through a tooth block, the support shaft is rotatably connected with the base through a ball bearing, and a sealing groove matched with the sealing partition plate is arranged at the connection position of the water inlet pipe and the irrigation device.

[0013] In the above technical scheme, the utility model provides the technical effect and advantage:

[0014] 1, through the start servo motor, servo motor drives the transmission rod rotation, transmission rod rotation through the support rod drive connecting ring rotation, connecting ring rotation drive tripod rotation, tripod through the bearing in the connecting ring outer wall rotation, the tripod through the bearing rotation drive the bottom fixed petri dish follow connecting ring rotation, the tripod drive petri dish on the connecting ring still keep horizontal, at the same time because the connecting ring is circular, when the petri dish is installed in the connecting ring, multiple petri dishes are distributed in a fan shape, that is, the bottom petri dish tomato seeds can be avoided due to insufficient light to cause the development of the situation occurs;

[0015] 2, through the transmission rod rotation, make the transmission rod through the support rod drive connecting ring rotation, make the connecting ring rotation and the expansion plate contact, make the expansion plate move to the connecting groove inside the connecting ring, make the expansion plate drive the support plate remove the extrusion of the expansion spring, make the expansion spring push the support plate move, so as to push the expansion plate to move to the inside of the connecting ring, the support plate moves drive the rack to move, the rack moves drive the connecting gear rotation, the connecting gear rotation drive the support shaft rotation, the support shaft rotation drive the sealing baffle rotation, make the sealing baffle rotation remove the sealing isolation between the water inlet pipe and the irrigation equipment, so that the inside of the water inlet pipe of the rich selenium bacteria agent liquid flows into the inside of the irrigation equipment, that is, the irrigation equipment can complete the irrigation operation of the petri dish on the connecting ring through the irrigation nozzle. BRIEF DESCRIPTION OF DRAWINGS

[0016] In order to more clearly illustrate the technical scheme in the embodiments of the present application or prior art, the drawings needed in the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments described in the present application, and other drawings can also be obtained by those skilled in the art according to these drawings.

[0017] Figure 1 It is the overall structure diagram of the utility model;

[0018] Figure 2 It is the cross section structure diagram of the connecting ring of the utility model;

[0019] Figure 3 It is the cross section structure diagram of the base and irrigation equipment of the utility model;

[0020] Figure 4 It is the Figure 3 The enlarged structure diagram of A in the middle.

[0021] Explanation of reference signs:

[0022] 1, base; 2, support mechanism; 201, servo motor; 202, transmission rod; 203, support rod; 204, connecting ring; 205, tripod; 206, culture dish; 3, irrigation mechanism; 301, irrigation equipment; 302, water inlet pipe; 303, telescopic plate; 304, support plate; 305, telescopic spring; 306, rack; 307, support shaft; 308, connecting gear; 309, sealing partition. DETAILED DESCRIPTION

[0023] In order to make the technical personnel in the field better understand the technical scheme of the utility model, the utility model will be introduced in further detail below in combination with the drawings.

[0024] The utility model provides a kind of tomato cultivation support with selenium-rich bacterial agent irrigation function as shown in Figures 1-4 The utility model provides a kind of tomato cultivation support with selenium-rich bacterial agent irrigation function as shown in The utility model provides a kind of tomato cultivation support with selenium-rich bacterial agent irrigation function as shown in

[0025] Support mechanism 2 includes servo motor 201, and servo motor 201 is installed and fixed to one end of the top end of base 1, and one end of servo motor 201 is rotatably connected with transmission rod 202, and transmission rod 202 penetrates base 1 to the inside of base 1, and support rod 203 is connected and fixed to the outer wall of transmission rod 202, and is located at the end of transmission rod 202 away from servo motor 201, and connecting ring 204 is installed and fixed to the outer wall of support rod 203, and is located at the top end of base 1, and multiple tripods 205 are rotatably connected to the inner wall of connecting ring 204, and are located between connecting ring 204, and culture dish 206 is installed and fixed between multiple tripods 205, and is located above base 1, and the mutual cooperation of the internal parts of support mechanism 2 can make the tomato seeds in culture dish 206 on the support receive sufficient illumination, and ensure its growth state.

[0026] The irrigation mechanism 3 includes an irrigation device 301. There are multiple irrigation devices 301. Multiple irrigation devices 301 are installed and fixed on the top of the base 1 and are located on both sides of the culture dish 206. Water inlet pipes 302 are connected and fixed on both sides of the base 1 and pass through the base 1 to the inside of the irrigation device 301. The top of the base 1 is slidably connected to a telescopic plate 303, which passes through the inside of the base 1 and is located at the bottom end of the connecting ring 204. The telescopic plate 303 passes through the bottom end of the inside of the base 1 and is connected and fixed to a support plate 304, and is slidably connected to the inside of the base 1. The bottom end of the support plate 304 is connected and fixed to a telescopic spring. 305, racks 306 are connected and fixed on both sides of the top of the support plate 304, and a support shaft 307 is provided at one end of the rack 306, which is rotatably connected to the inside of the base 1, and a connecting gear 308 is sleeved on the outer wall of the support shaft 307 and fits with the outer wall of the support shaft 307, and a sealing partition 309 is connected and fixed on the side of the support shaft 307 away from the rack 306, and passes through the inner wall of the water inlet pipe 302. Through the mutual cooperation between the internal parts of the irrigation mechanism 3, the automatic irrigation operation of the tomato seeds in the culture dish 206 can be completed, thereby reducing the amount of agricultural work for farmers and improving the practicality of the cultivation support.

[0027] Refer to the instruction manual Figures 1-4 A support groove matching the connecting ring 204 is provided at the top of the base 1. The tripod 205 is rotatably connected to the connecting ring 204 through a bearing. A reducer is provided at the connection between the transmission rod 202 and the servo motor 201. The tripod 205 is rotatably connected to the connecting ring 204 through a bearing, so that when the connecting ring 204 rotates, the tripod 205 rotates on the outer wall of the connecting ring 204 through the bearing to drive the culture dish 206 to maintain a horizontal state.

[0028] Refer to the instruction manual Figures 1-4 The interior of the base 1 is provided with a telescopic groove that matches the telescopic plate 303, the outer wall of the connecting ring 204 is provided with a connecting groove that matches the telescopic plate 303, and the contact surface between the top of the telescopic plate 303 and the connecting groove of the connecting ring 204 is provided with an arc surface. The end of the irrigation device 301 close to the culture dish 206 is equipped with multiple irrigation nozzles. The end of the irrigation device 301 close to the culture dish 206 is equipped with multiple irrigation nozzles, which facilitates the irrigation device 301 to irrigate and spray the tomato seeds in the culture dish 206 through the irrigation nozzles.

[0029] Refer to the instruction manual Figures 1-4The rack 306 is engaged with the connecting gear 308 through the tooth block, the supporting shaft 307 is rotatably connected with the base 1 through the ball, the sealing groove matched with the sealing partition plate 309 is arranged at the connecting position of the water inlet pipe 302 and the irrigation equipment 301, and the sealing groove matched with the sealing partition plate 309 is arranged at the connecting position of the water inlet pipe 302 and the irrigation equipment 301, so that the supporting shaft 307 drives the sealing partition plate 309 to rotate, and the water inlet pipe 302 and the irrigation equipment 301 are sealed and isolated.

[0030] The utility model discloses a working principle:

[0031] Referring to the drawings in the specification Figures 1-4 By starting servo motor 201, servo motor 201 drives transmission rod 202 to rotate, and transmission rod 202 rotates and drives connecting ring 204 to rotate through support rod 203, and connecting ring 204 rotates and drives tripod 205 to rotate, and tripod 205 rotates through bearing on the outer wall of connecting ring 204, and when the bottom fixed petri dish 206 is rotated along with connecting ring 204 through bearing rotation of tripod 205, tripod 205 drives petri dish 206 to remain horizontal on connecting ring 204, and because connecting ring 204 is circular, when petri dish 206 is installed on connecting ring 204, multiple petri dishes 206 are distributed in a fan shape, so that when multiple petri dishes 206 are stacked on the cultivation support, the condition that tomato seeds in the bottom petri dish 206 develop abnormally due to insufficient illumination can be avoided.

[0032] Referring to the drawings in the specification Figures 1-4 When transmission rod 202 rotates and drives connecting ring 204 to rotate through support rod 203, connecting ring 204 rotates and contacts telescopic plate 303, so that telescopic plate 303 moves to the connecting groove in connecting ring 204, telescopic plate 303 drives support plate 304 to remove the extrusion of telescopic spring 305, telescopic spring 305 pushes support plate 304 to move, so that telescopic plate 303 moves to the inside of connecting ring 204, support plate 304 moves and drives rack 306 to move, rack 306 moves and drives connecting gear 308 to rotate, connecting gear 308 rotates and drives supporting shaft 307 to rotate, supporting shaft 307 rotates and drives sealing partition plate 309 to rotate, sealing partition plate 309 rotates and removes the sealing isolation between water inlet pipe 302 and irrigation equipment 301, so that the selenium-rich bacterial agent liquid in water inlet pipe 302 flows into irrigation equipment 301, and irrigation equipment 301 can complete the irrigation operation on the tomato seeds on petri dish 206 between connecting ring 204 through irrigation spray head.

[0033] The above description is merely illustrative of certain exemplary embodiments of the present invention. It goes without saying that those skilled in the art will be able to modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and description are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.

Claims

1. A tomato cultivation support with a selenium-rich microbial agent irrigation function, comprising a base (1), characterized in that: The top of the base (1) is rotatably connected to a bracket mechanism (2), and irrigation mechanisms (3) are fixedly installed on both sides of the base (1), penetrate the interior of the base (1), and are slidably connected to the top of the base (1); The support mechanism (2) includes a servo motor (201), the servo motor (201) is fixed to one end of the top of the base (1), one end of the servo motor (201) is rotatably connected to a transmission rod (202), and passes through the base (1) to the inside of the base (1), the outer wall of the transmission rod (202) is connected and fixed with a support rod (203) around the periphery, and is located at the end of the transmission rod (202) away from the servo motor (201), the outer wall of the support rod (203) is fixed with a connecting ring (204), and is located at the top of the base (1), the inner wall of the connecting ring (204) is rotatably connected to a plurality of tripods (205), and is located between the connecting rings (204), and a culture dish (206) is installed and fixed between the plurality of tripods (205), and is located above the base (1); The irrigation mechanism (3) includes an irrigation device (301), and there are multiple irrigation devices (301). The multiple irrigation devices (301) are installed and fixed on the top of the base (1) and are located on both sides of the culture dish (206). The two sides of the base (1) are connected and fixed with water inlet pipes (302), which pass through the base (1) to the inside of the irrigation device (301). The top of the base (1) is slidably connected with a telescopic plate (303), which passes through the inside of the base (1) and is located at the bottom end of the connecting ring (204). The telescopic plate (303) passes through the bottom end of the inside of the base (1) and is connected and fixed with a support plate ( 304), and is slidably connected to the inside of the base (1); the bottom end of the support plate (304) is connected and fixed with a telescopic spring (305); the two sides of the top of the support plate (304) are connected and fixed with racks (306); one end of the rack (306) is provided with a support shaft (307) and is rotatably connected to the inside of the base (1); the outer wall of the support shaft (307) is sleeved with a connecting gear (308) and is in contact with the outer wall of the support shaft (307); the side of the support shaft (307) away from the rack (306) is connected and fixed with a sealing partition (309), and penetrates to the inner wall of the water inlet pipe (302).

2. A tomato cultivation support with selenium-enriched microbial agent irrigation function according to claim 1, characterized in that: The top of the base (1) is provided with a support groove matching the connecting ring (204); the tripod (205) is rotatably connected to the connecting ring (204) via a bearing; a reducer is provided at the connection between the transmission rod (202) and the servo motor (201).

3. The tomato cultivation support with selenium-enriched microbial agent irrigation function according to claim 1, characterized in that: The base (1) is provided with a telescopic groove matching the telescopic plate (303) on its interior, the connecting ring (204) is provided with a connecting groove matching the telescopic plate (303) on its outer wall, the top of the telescopic plate (303) and the contact surface of the connecting groove of the connecting ring (204) are provided with an arc surface, and a plurality of irrigation nozzles are installed at one end of the irrigation device (301) close to the culture dish (206).

4. The tomato cultivation support with selenium-enriched microbial agent irrigation function according to claim 1, characterized in that: The rack (306) is meshed with the connecting gear (308) via a tooth block, the support shaft (307) is rotatably connected to the base (1) via a ball bearing, and a sealing groove matching the sealing partition (309) is provided at the connection between the water inlet pipe (302) and the irrigation equipment (301).