A zucchini cultivation device and its method

By designing the main body and components of the zucchini cultivation device, the problem of large area and difficulty in observation and recording of the zucchini cultivation device is solved, and the correction of zucchini growth and efficient utilization of resources are achieved, and the cultivation effect is improved.

CN117204224BActive Publication Date: 2025-08-05GANSU TONGXING AGRI DEV CO LTD
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Patent Information

Application Number
CN202310832604.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-08
Publication Date
2025-08-05
Estimated Expiration
2043-07-08

AI Technical Summary

Technical Problem

The existing zucchini cultivation equipment requires a large site and cannot effectively observe and record the cultivation process, which leads to difficulty in improving cultivation technology.

Method used

A device including a zucchini cultivation device body is designed, equipped with components such as a cultivation recording placement box, a zucchini correction ring, a growth restriction baffle, a water storage box, a spotlight moving track, etc., for recording, correcting, observing and managing zucchini growth.

Benefits of technology

The yield rate of zucchini cultivation has been improved, and the tilt growth of the correction ring is corrected, the water filtration and the design of storage boxes have been improved. The use of recording boxes and illumination lamps has enhanced the controllability and information recording of the cultivation process.

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Abstract

The present invention belongs to the technical field of zucchini cultivation, specifically a zucchini cultivation device and method thereof, comprising a zucchini cultivation device main body, wherein the outer wall of the zucchini cultivation device main body is fixedly connected to a cultivation record placement box, and the top of the cultivation record placement box is tightly fitted with a cardboard, and one side of the cardboard is rotatably connected to a record placement box rotation shaft, the top of the zucchini cultivation device main body is rotatably connected to a bracket baffle rotation shaft, and one side of the bracket baffle rotation shaft is fixedly connected to a bracket clamping block, the top of the zucchini cultivation device main body is clamped and connected to a bracket connecting block, and one side of the bracket connecting block is rotatably connected to a zucchini correction ring; the present invention is provided with a zucchini correction ring, which can correct the zucchini after it grows out, to avoid the problem that inclined growth is detrimental to the cultivation of the zucchini, resulting in problems such as poor development of the cultivated zucchini, and improving the yield rate of cultivation.
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Description

Technical Field

[0001] The invention relates to the technical field of zucchini cultivation, in particular to a zucchini cultivation device. Background Art

[0002] Zucchini is a common vegetable. It is widely cultivated in the south and north. Zucchini contains more nutrients such as vitamin C and glucose. It has the effects of relieving restlessness and thirst, moistening the lungs and relieving cough, clearing away heat and promoting diuresis, and reducing swelling and dispersing nodules. The fruit is used as a vegetable.

[0003] Chinese patent CN103975715B discloses a method for cultivating autumn zucchini, including the following steps: selecting improved varieties, cultivating strong seedlings, planting, cultivation management, pest and disease control, and harvesting. This method delays the supply period of autumn zucchini grown in the open field from mid-to-late October to after December, creating a highly efficient, off-season, and unique cultivation technique for autumn zucchini. This technique is simple to implement, highly operational, and widely adaptable, meeting the off-season market demand for autumn zucchini. The method also boasts significant and stable economic benefits, minimizes pests and diseases during production, and produces high-quality autumn zucchini.

[0004] An existing zucchini cultivation device may require a large area when in use and cannot well observe and record the cultivation process, resulting in problems in improving the cultivation technology.

[0005] Therefore, in order to solve the above problems, a zucchini cultivation device and method are proposed. Summary of the Invention

[0006] In order to make up for the shortcomings of the existing technology, the present invention solves the problem that an existing zucchini cultivation device may require a large space when in use and cannot observe and record the cultivation process well, which leads to the need to improve the cultivation technology.

[0007] The technical solution adopted by the present invention to solve its technical problems is: the zucchini cultivation device described in the present invention includes a zucchini cultivation device body, the outer wall of the zucchini cultivation device body is fixedly connected to a cultivation record placement box, and the top of the cultivation record placement box is tightly fitted with a cardboard, and one side of the cardboard is rotatably connected to a record placement box rotation shaft, the top of the zucchini cultivation device body is rotatably connected to a bracket baffle rotation shaft, and one side of the bracket baffle rotation shaft is fixedly connected to a bracket clamping block, the top of the zucchini cultivation device body is clamped and connected to a bracket connecting block, and one side of the bracket connecting block is rotatably connected to a zucchini correction ring, the inner wall of the zucchini cultivation device body is clamped It is connected to a growth limiting baffle, and a zucchini growth groove is provided inside the growth limiting baffle, and a nutrient adding groove is provided inside the growth limiting baffle. One side of the zucchini cultivation device body is rotatably connected to a collection protection shell, and the inside of the collection protection shell is slidably connected to a soil component collection tube. The inside of the zucchini cultivation device body is fixedly connected to a soil pad, and a water filter port is provided inside the soil pad. The bottom of the soil pad is slidably connected to a water collection box, and one side of the water collection box is fixedly connected to a collection box pulling handle, and the other side of the zucchini cultivation device body is slidably connected to a collection card block, and the outer wall of the collection card block is engaged with a card block slot ring.

[0008] Preferably, the outside of the zucchini cultivation device body is fixedly connected to a moving track of the irradiation lamp, and the outside of the zucchini cultivation device body is fixedly connected to an internal snap-fit connection with a moving support frame of the irradiation lamp. One side of the moving support frame of the irradiation lamp is rotatably connected to a irradiation lamp adjustment cover, and a cultivation irradiation lamp is installed inside the irradiation lamp adjustment cover.

[0009] Preferably, the bracket engaging block forms a rotating structure with the zucchini cultivation device body through the bracket baffle rotating shaft, and the zucchini cultivation device body and the bracket connecting block form a engaging structure.

[0010] Preferably, the water storage box and the zucchini cultivation device body form a sliding structure, and the water storage box forms a locking structure with the zucchini cultivation device body through the storage collection block and the block slot ring.

[0011] Preferably, the collecting protection shell and the zucchini cultivation device body form a rotating structure, and the collecting protection shell and the soil component collecting tube form a sliding structure.

[0012] Preferably, the nutrient addition grooves are symmetrically arranged about the center of the zucchini growth grooves, and the zucchini growth grooves are equidistantly arranged about the outer wall of the growth limiting baffle, and the outer diameter of the growth limiting baffle is consistent with the inner diameter of the zucchini cultivation device body.

[0013] Preferably, the cultivation irradiation lamp forms a rotating structure with the irradiation lamp movable support frame through the irradiation lamp adjustment cover, and the irradiation lamp movable support frame forms a sliding structure with the zucchini cultivation device body through the irradiation lamp movable track.

[0014] Preferably, the method for using the above-mentioned zucchini cultivation device is characterized by comprising the following steps:

[0015] S1. First, the soil pad of the main body of the zucchini cultivation device is covered with soil. Then, a growth restriction baffle is placed on the soil, the soil is flattened, and seeds are planted through the zucchini growth grooves. As the zucchini grow, they grow upward along the zucchini growth grooves. During cultivation, nutrient solution and other substances can be added to the soil through nutrient addition grooves surrounding the zucchini growth grooves to promote better growth.

[0016] S2. Secondly, a cultivation record placement box is provided in front of the main body of the zucchini cultivation device to record the growth information of the zucchini. After that, a card or paper material is placed in the card slot in the cultivation record placement box, and the cardboard is rotated along the rotation axis of the record placement box to surround the card slot in the cultivation record placement box, and the data card is fixed therein. When watering the zucchini, excess water will flow downward and flow into the water storage box through the water filtering port opened on the soil pad. When the accumulated water reaches a certain amount, the storage collection card block is lifted upward so that it is no longer connected to the card block slot ring, and the sliding connection between the water storage box and the main body of the zucchini cultivation device is no longer locked. The water storage box is pulled out by pulling the handle of the storage box, and the accumulated water inside is reused or processed;

[0017] S3. Then, there is a moving track for the irradiation lamp on the back of the main body of the zucchini cultivation device, so that the internal irradiation lamp moving support frame can move left and right with the irradiation lamp adjustment cover and the cultivation irradiation lamp, so that the zucchini cultivated inside can be carefully observed. The cultivation irradiation lamp is usually placed in the middle position, and the zucchini in the three zucchini growth grooves can be evenly irradiated. It can be turned off when irradiation is not needed, and the zucchini fruits grown will spread out and grow around the zucchini growth groove. During the growth process of the zucchini, it may tilt during the growth process, resulting in poor cultivated fruits. At this time, the bracket connecting block is placed in the card slot above the main body of the zucchini cultivation device, and the bracket clamping block is driven by rotating the bracket baffle shaft so that the bracket clamping block clamps the bracket connecting block. A rope is tied to the zucchini correction ring, and the other end of the rope is tied to the zucchini to correct its tilted state. In the process of growing, the zucchini may grow in other directions. The zucchini correction ring can be rotated in the bracket connecting block to realign the rope with the zucchini to prevent it from growing tilted.

[0018] S4. Then, the soil composition collection tube under the moving track of the irradiation lamp can be used to sample and collect the soil inside for inspection to avoid factors such as excessive humidity that are detrimental to the growth of zucchini. The collection protective shell is rotated so that its notch faces upward, allowing the soil to fall into the soil composition collection tube. The collection protective shell is then turned back so that the notch faces downward, and the soil composition collection tube is pulled out to inspect the soil extracted inside to avoid factors such as composition that affect the zucchini.

[0019] The present invention is beneficial in that:

[0020] 1. The present invention is provided with a zucchini correction ring, which can correct the zucchini after it grows out, avoiding the problem of tilted growth that is detrimental to the cultivation of zucchini and causes problems such as poor development of cultivated zucchini, thereby improving the yield rate of cultivation;

[0021] 2. The present invention is provided with a soil pad, which allows excess accumulated water to be filtered through the water filter port, thus preventing excessive water accumulation from causing problems for the zucchini. In addition, the water collection box can be used to reuse the filtered water, thereby improving resource recovery rate.

[0022] 3. The present invention is provided with a cultivation record storage box, which can timely record the start time of cultivation and information during the cultivation process, and can randomly check past cultivation data. In addition, the soil composition collection tube can be used to sample and inspect the internal soil to avoid problems with humidity or soil composition that may have an adverse effect on the cultivation of zucchini. After the inspection is completed, the data can be recorded on the data card and placed in the cultivation record storage box;

[0023] 4. The present invention utilizes a cultivation lighting system to control the cultivation temperature. The optimum temperature during the growing period is 20-25°C. Growth slows below 15°C and stops below 8°C. Above 30°C, growth slows and disease is highly likely to occur. The optimum temperature for seed germination is 25-30°C. Germination can occur at 13°C, but very slowly. Germination is fastest at 30-35°C, but can easily lead to excessive growth. The cultivation lighting system not only provides a certain degree of temperature control but also provides illumination for monitoring the growth of the zucchini and the nutrient status of the soil when necessary. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0025] Figure 1 It is a schematic diagram of the overall three-dimensional structure of the present invention from a top view;

[0026] Figure 2 It is a schematic diagram of the three-dimensional structure of the present invention as a whole;

[0027] Figure 3 It is a schematic diagram of the overall three-dimensional structure of the present invention from the side;

[0028] Figure 4 Schematic diagram of the three-dimensional structure of the growth restriction baffle portion of the present invention;

[0029] Figure 5 It is a schematic diagram of the three-dimensional structure of the soil pad part of the present invention.

[0030] In the figure: 1. Zucchini cultivation device body; 2. Cultivation record placement box; 3. Cardboard; 4. Record placement box rotation axis; 5. Bracket baffle rotation axis; 6. Bracket locking block; 7. Bracket connecting block; 8. Zucchini correction ring; 9. Growth restriction baffle; 10. Zucchini growth trough; 11. Nutrient addition trough; 12. Collection protection shell; 13. Soil component collection tube; 14. Soil pad; 15. Water filter port; 16. Water collection box; 17. Collection box pull handle; 18. Collection card block; 19. Card block slot ring; 20. Irradiation lamp moving track; 21. Irradiation lamp moving support frame; 22. Irradiation lamp adjustment cover; 23. Cultivation irradiation lamp. DETAILED DESCRIPTION

[0031] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0032] Example 1

[0033] See also Figures 1 to 5As shown, a zucchini cultivation device includes a zucchini cultivation device body 1, the outer wall of the zucchini cultivation device body 1 is fixedly connected to a cultivation record placement box 2, and the top of the cultivation record placement box 2 is tightly fitted with a cardboard 3, and one side of the cardboard 3 is rotatably connected to a record placement box rotation shaft 4, the top of the zucchini cultivation device body 1 is rotatably connected to a bracket baffle rotation shaft 5, and one side of the bracket baffle rotation shaft 5 is fixedly connected to a bracket clamping block 6, the top of the zucchini cultivation device body 1 is clamped and connected to a bracket connection block 7, and one side of the bracket connection block 7 is rotatably connected to a zucchini correction ring 8, the inner wall of the zucchini cultivation device body 1 is clamped and connected to a growth limiting baffle 9, and a zucchini growth groove 10 is provided inside the growth limiting baffle 9, and a nutrient adding groove 11 is provided inside the growth limiting baffle 9, and one side of the zucchini cultivation device body 1 is rotatably connected to A collection protection shell 12 is provided, and a soil component collection tube 13 is slidably connected to the interior of the collection protection shell 12. A soil pad 14 is fixedly connected to the interior of the zucchini cultivation device body 1, and a water filter port 15 is provided inside the soil pad 14. A water collection box 16 is slidably connected to the bottom of the soil pad 14, and a collection box pulling handle 17 is fixedly connected to one side of the water collection box 16. A collection card block 18 is slidably connected to the other side of the zucchini cultivation device body 1, and the outer wall of the collection card block 18 is snap-connected with a card block slot ring 19. The outside of the zucchini cultivation device body 1 is fixedly connected to a moving track 20 for the irradiation lamp, and the outside is fixedly connected to the inside of the irradiation lamp moving support frame 21, and one side of the irradiation lamp moving support frame 21 is rotatably connected to a irradiation lamp adjustment cover 22, and a cultivation irradiation lamp 23 is installed inside the irradiation lamp adjustment cover 22.

[0034] See also Figures 1 to 4 As shown, the bracket engaging block 6 forms a rotating structure with the zucchini cultivation device body 1 through the bracket baffle shaft 5, and the zucchini cultivation device body 1 forms a locking structure with the bracket connecting block 7; during the growth of zucchini, it may tilt during the growth process, resulting in poor cultivated fruits. At this time, the bracket connecting block 7 is placed in the card slot above the zucchini cultivation device body 1, and the bracket engaging block 6 is driven by rotating the bracket baffle shaft 5, so that the bracket engaging block 6 locks the bracket connecting block 7, and a rope is tied to the zucchini correction ring 8, and the other end of the rope is tied to the zucchini to correct its tilted state. In addition, the zucchini may grow in other directions during its growth process. The zucchini correction ring 8 can be rotated in the bracket connecting block 7 to realign the rope with the zucchini.

[0035] See also Figure 1 and Figures 3 to 5As shown, the water storage box 16 and the zucchini cultivation device body 1 form a sliding structure, and the water storage box 16 forms a locking structure with the zucchini cultivation device body 1 through the storage collection block 18 and the block slot ring 19; when the accumulated water reaches a certain amount, the storage collection block 18 is lifted upward to connect it with the block slot ring 19, and at the same time, the sliding connection between the water storage box 16 and the zucchini cultivation device body 1 is no longer locked, and the water storage box 16 is pulled out by pulling the storage box handle 17, and the water accumulated inside is reused or processed.

[0036] See also Figure 3 and Figure 5 As shown, the collecting protective shell 12 and the main body 1 of the zucchini cultivation device form a rotating structure, and the collecting protective shell 12 and the soil component collecting tube 13 form a sliding structure; the soil component collecting tube 13 below the irradiation lamp moving track 20 can be sampled and collected to check the internal soil to avoid the adverse effects of excessive humidity and other factors on the growth of zucchini. By rotating the collecting protective shell 12 so that its notch faces upward, the soil falls into the soil component collecting tube 13, and then the collecting protective shell 12 is turned back so that the notch faces downward, the soil component collecting tube 13 is pulled out, and the soil extracted inside is checked to avoid the effects of factors such as composition on the zucchini.

[0037] See also Figure 1 and Figure 5 As shown, the nutrient addition grooves 11 are symmetrically arranged about the center of the zucchini growth groove 10, and the zucchini growth groove 10 is arranged at equal intervals about the outer wall of the growth limiting baffle 9, and the outer diameter of the growth limiting baffle 9 is consistent with the inner diameter of the zucchini cultivation device body 1; the soil pad 14 of the zucchini cultivation device body 1 is covered with soil, and then the growth limiting baffle 9 is placed on the soil, the soil is flattened and seeds are planted through the zucchini growth groove 10, so that the zucchini can grow upward along the zucchini growth groove 10 when it grows. During cultivation, nutrient solution and the like can be added to the soil through the nutrient addition grooves 11 around the zucchini growth groove 10, so that it can grow better.

[0038] See also Figures 1 to 3 As shown, the cultivation irradiation lamp 23 forms a rotating structure with the irradiation lamp movable support frame 21 through the irradiation lamp adjustment cover 22, and the irradiation lamp movable support frame 21 forms a sliding structure with the zucchini cultivation device body 1 through the irradiation lamp movable track 20; there is a irradiation lamp movable track 20 on the back of the zucchini cultivation device body 1, so that the irradiation lamp movable support frame 21 inside can move left and right with the irradiation lamp adjustment cover 22 and the cultivation irradiation lamp 23, so as to carefully observe the zucchini cultivated inside. Usually, the cultivation irradiation lamp 23 is placed in the middle position, and the zucchini in the three zucchini growth grooves 10 can be evenly irradiated. It can be turned off when irradiation is not needed.

[0039] Working principle: First, the soil pad 14 of the main body 1 of the zucchini cultivation device is covered with soil, and then the growth limiting baffle 9 is placed on the soil, the soil is flattened and seeds are planted through the zucchini growth groove 10, so that the zucchini can grow upward along the zucchini growth groove 10. During cultivation, nutrient solution and other substances can be added to the soil through the nutrient adding groove 11 around the zucchini growth groove 10 to enable it to grow better. A cultivation record placement box 2 is provided in front of the main body 1 of the zucchini cultivation device to record the growth information of the zucchini, and then a card or paper material is placed in the card in the cultivation record placement box 2. The cardboard 3 is rotated along the record placement box rotation axis 4 until it surrounds the card slot in the cultivation record placement box 2 and fixes the data card therein. When watering the zucchini, excess water will flow downward and flow into the water storage box 16 through the water filter port 15 opened on the soil pad 14. When the accumulated water reaches a certain amount, the collection card block 18 is lifted upward so that it is no longer connected to the card block slot ring 19. At the same time, the sliding connection between the water storage box 16 and the zucchini cultivation device body 1 is no longer engaged. The water storage box 16 is pulled out by pulling the collection box handle 17, and the accumulated water inside is reused or processed.

[0040] There is a lighting moving track 20 on the back of the zucchini cultivation device body 1, so that the lighting moving support frame 21 inside it can move left and right with the lighting adjustment cover 22 and the cultivation lighting lamp 23, so as to carefully observe the zucchini cultivated inside. Usually, the cultivation lighting lamp 23 is placed in the middle position, and the zucchini in the three zucchini growth grooves 10 can be evenly irradiated and the temperature required for their growth can be controlled. It can be turned off when no irradiation is needed, and the fruits grown by the zucchini will spread out and grow around the zucchini growth groove 10. During the growth process of the zucchini, it may tilt during the growth process, resulting in poor cultivated fruits. At this time, the bracket connecting block 7 is placed in the card slot above the zucchini cultivation device body 1, and the bracket clamping block 6 is driven by rotating the bracket baffle shaft 5 to make the bracket clamping block 6 Lock the bracket connecting block 7, tie a rope to the zucchini correction ring 8, and tie the other end of the rope to the zucchini to correct its tilted state. Zucchini may grow in other directions during its growth. The zucchini correction ring 8 can be rotated in the bracket connecting block 7 to realign the rope with the zucchini to prevent it from growing tilted. The soil component collection tube 13 under the irradiation lamp moving track 20 can be used to sample and collect the internal soil for inspection to avoid adverse effects of high humidity and other factors on the growth of zucchini. By rotating the collection protective shell 12 with its notch facing upwards, the soil falls into the soil component collection tube 13, and then the collection protective shell 12 is turned back to face the notch downwards, the soil component collection tube 13 is pulled out, and the soil extracted inside is inspected to avoid the influence of composition and other factors on the zucchini.

[0041] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention, and such changes and modifications fall within the scope of the invention as claimed.

Claims

1. A zucchini cultivation device, characterized in that: The invention comprises a zucchini cultivation device body (1), wherein the outer wall of the zucchini cultivation device body (1) is fixedly connected with a cultivation record placement box (2), and the top of the cultivation record placement box (2) is tightly fitted with a cardboard (3), and one side of the cardboard (3) is rotatably connected with a record placement box rotation shaft (4), the top of the zucchini cultivation device body (1) is rotatably connected with a bracket baffle rotation shaft (5), and one side of the bracket baffle rotation shaft (5) is fixedly connected with a bracket clamping block (6), the top of the zucchini cultivation device body (1) is clamped and connected with a bracket connection block (7), and one side of the bracket connection block (7) is rotatably connected with a zucchini correction ring (8), the inner wall of the zucchini cultivation device body (1) is clamped and connected with a growth limiting baffle (9), and a zucchini growth limiting baffle (9) is provided inside. A long groove (10) is formed, and a nutrient addition groove (11) is provided inside the growth restriction baffle (9); one side of the zucchini cultivation device body (1) is rotatably connected to a collection protection shell (12), and the interior of the collection protection shell (12) is slidably connected to a soil component collection tube (13); the interior of the zucchini cultivation device body (1) is fixedly connected to a soil pad (14), and the interior of the soil pad (14) is provided with a water filter port (15); the bottom of the soil pad (14) is slidably connected to a water storage box (16), and one side of the water storage box (16) is fixedly connected to a storage box pull handle (17); the other side of the zucchini cultivation device body (1) is slidably connected to a storage collection card block (18), and the outer wall of the storage collection card block (18) is engaged with a card block slot ring (19); The exterior of the zucchini cultivation device body (1) is fixedly connected to a moving track for an irradiation lamp (20), the interior of the moving track for an irradiation lamp is engaged with a moving support frame (21), one side of the moving support frame (21) is rotatably connected to a irradiation lamp adjustment cover (22), and a cultivation irradiation lamp (23) is installed inside the irradiation lamp adjustment cover (22); The water storage box (16) forms a locking structure with the zucchini cultivation device body (1) through the storage and collection clamping block (18) and the clamping block clamping groove ring (19).

2. The zucchini cultivation device according to claim 1, characterized in that: The nutrient addition grooves (11) are symmetrically arranged about the center of the zucchini growth groove (10), and the zucchini growth groove (10) is arranged at equal intervals about the outer wall of the growth limiting baffle (9), and the outer diameter of the growth limiting baffle (9) is consistent with the inner diameter of the zucchini cultivation device body (1).

3. The zucchini cultivation device according to claim 1, characterized in that: The irradiation lamp movable support frame (21) forms a sliding structure with the zucchini cultivation device main body (1) via the irradiation lamp movable track (20).

4. The method for using the zucchini cultivation device according to any one of claims 1 to 3, characterized in that: The following steps are involved: S1. First, the soil pad (14) of the main body (1) of the zucchini cultivation device is covered with soil, and then a growth limiting baffle (9) is placed on the soil to flatten the soil and plant seeds through the zucchini growth groove (10), so that the zucchini grow upward along the zucchini growth groove (10). During cultivation, nutrient solution and other substances are added to the soil through the nutrient addition groove (11) around the zucchini growth groove (10) to enable better growth. S2. Secondly, a cultivation record placement box (2) is provided in front of the main body (1) of the zucchini cultivation device. After recording the information of the growth of the zucchini, a card or paper data is placed in the card slot in the cultivation record placement box (2), and the cardboard (3) is rotated along the recording placement box rotation axis (4) to surround the card slot in the cultivation record placement box (2), and the data card is fixed therein. When watering the zucchini, excess water will flow downward and flow into the water storage box (16) through the water filter port (15) provided on the soil pad (14). When the accumulated water reaches a certain amount, the collection card block (18) is lifted upward so that it is no longer connected to the card block slot ring (19), and the sliding connection between the water storage box (16) and the zucchini cultivation device main body (1) is no longer locked. The water storage box (16) is pulled out by pulling the storage box handle (17), and the water stored inside is reused for a second time. S3. Then, there is a light moving track (20) on the back of the main body (1) of the zucchini cultivation device, so that the light moving support frame (21) inside it can move left and right with the light adjustment cover (22) and the cultivation light (23) so as to carefully observe the zucchini cultivated inside. Usually, the cultivation light (23) is placed in the middle position to evenly illuminate the zucchini in the three zucchini growth grooves (10). It is turned off when no illumination is needed, and the fruits grown by the zucchini will spread out to the four sides of the zucchini growth grooves (10). During the growth of the zucchini, the zucchini may be damaged due to the growth of the zucchini. During the long process, the zucchini is tilted, resulting in poor quality of the cultivated fruits. At this time, the support connecting block (7) is placed in the card slot above the main body (1) of the zucchini cultivation device, and the support clamping block (6) is driven by rotating the support baffle shaft (5), so that the support clamping block (6) clamps the support connecting block (7). A rope is tied to the zucchini correction ring (8), and the other end of the rope is tied to the zucchini to correct its tilted state. In addition, the zucchini may grow in other directions during its growth. The zucchini correction ring (8) rotates in the support connecting block (7) to re-align the rope with the zucchini to prevent it from growing tilted. S4. Then, the soil inside is sampled and collected through the soil component collection tube (13) below the moving track (20) of the irradiation lamp, and the soil is checked to avoid the adverse effects of excessive humidity on the growth of zucchini. The collection protection shell (12) is rotated so that the notch faces upward, and the soil falls into the soil component collection tube (13). The collection protection shell (12) is then rotated back so that the notch faces downward, and the soil component collection tube (13) is pulled out to check the soil extracted inside to avoid the influence of the composition on the zucchini.

Citation Information

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