Agricultural greenhouse structure for greenhouse planting

By using frame poles, support plates, and buffer components in the greenhouse, and utilizing dampers and guiding mechanisms to disperse wind force, the problem of traditional greenhouses being easily damaged in strong winds has been solved, thus achieving the stability of the greenhouse and the protection of agricultural products.

CN223758844UActive Publication Date: 2026-01-06吴云清
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Patent Information

Application Number
CN202520024775.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-07
Publication Date
2026-01-06
Estimated Expiration
2035-01-07

AI Technical Summary

Technical Problem

Traditional greenhouses have a simple structure and low cost, but they are easily damaged in windy weather and lack effective fixing and protection measures.

Method used

The structure employs a design with poles, support plates, and buffer components, including main and secondary dampers and force guiding mechanisms. It is fixed in the soil by poles and uses dampers and guiding mechanisms to disperse and buffer wind force, thereby improving the stability of the greenhouse.

Benefits of technology

It enhances the stability of the greenhouse, prevents it from being blown down by strong winds, protects the agricultural products inside, and improves the wind resistance of the greenhouse structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of greenhouses, in particular to an agricultural greenhouse structure for greenhouse planting, which comprises a buffer support consisting of a support plate I, a support plate II, a main damper and the like, a component force guide mechanism carried in a buffer group and mainly consisting of a driving rod, a guide rod, an auxiliary damper and the like, and the like. Compared with the prior art, the greenhouse has the advantages that the area of the side face of the greenhouse is large, the greenhouse is easily affected by strong wind, the supporting component is arranged on the side face of the greenhouse body, the buffering module is installed in the supporting component, one part of the buffering module has a component force guiding function, and one part of horizontally-conducted force can be transmitted to the other part of the buffering module. Therefore, the stability of the greenhouse structure is greatly improved, and the greenhouse and agricultural products planted in the greenhouse are effectively protected.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of greenhouse, specifically point to a kind of agricultural greenhouse structure for greenhouse planting. BACKGROUND

[0002] Plant growth is determined according to the degree of temperature, illumination, humidity and other factors in the environment. In order to provide sufficient light and comfortable temperature for crops in winter, a "small room" is built using the principle of light propagation and adopting semi-transparent white plastic cloth to cover the plants, providing a rapid and healthy growth environment for them.

[0003] The most primitive vegetable greenhouse is built by using a few steel rods to form a framework and then fixed with plastic cloth. Although many plantations have adopted steel structures, cement frames and frosted glass instead of plastic cloth to build modern greenhouses with the development of technology, such greenhouses are high in cost and cannot be disassembled at any time. In rural areas, the primitive greenhouse construction method is still popular. The primitive greenhouse structure is simple and lacks effective fixing and protection measures. In severe weather and under the influence of winter wind, it can be easily blown away. Therefore, a greenhouse structure for greenhouse planting is provided. SUMMARY

[0004] I. Technical problems to be solved

[0005] The technical problem to be solved by the utility model is that the traditional greenhouse is simple in structure for the purpose of cost saving and convenient disassembly, and is easily damaged in strong wind.

[0006] II. Technical scheme

[0007] To solve the above technical problems, the utility model provides a technical scheme: an agricultural greenhouse structure for greenhouse planting, comprising a frame rod.

[0008] A support plate one is connected to the two sides of the frame rod, a plurality of cylinder sleeves matched with the frame rod are connected to one side of the support plate one, a plurality of fastening mechanisms are connected to the top of the support plate one, a support plate two is connected to the side of the support plate one away from the frame rod, a buffer group is connected between the support plate one and the support plate two, and a plurality of support rods are connected to the side of the support plate two away from the frame rod and inclined downward.

[0009] Further, the fastening mechanism comprises a screw rod, the screw rod is rotatably connected to the top of the support plate one, a pressing piece is connected to the screw rod, slide rods are connected to the two sides of the pressing piece and slidably connected to the support plate one, and a limiting block is connected to the side of the slide rod close to the frame rod.

[0010] Further, the buffer group comprises a main damper and a force guiding mechanism, and the main damper and the force guiding mechanism are arranged between the support plate one and the support plate two.

[0011] Further, the force guiding mechanism comprises a sliding block, a plurality of sliding grooves are arranged on the support plate one, the sliding block is arranged in the sliding groove and is connected with the support plate one in a sliding mode, a support block is arranged on the support plate two, a driving rod is arranged in a rotating mode between the sliding block and the support block, a guide rod is arranged on the driving rod in a rotating mode, a pressure bearing rod is arranged on the bottom end of the guide rod in a rotating mode, and a secondary damper is arranged on the bottom end of the pressure bearing rod.

[0012] Further, the frame rod is connected with an inserting rod at the bottom end of each side in a downward mode, and the secondary damper is connected with an inserting block in a downward mode.

[0013] III. Advantages

[0014] Compared with the prior art, the greenhouse shed has a large side area, is more easily affected by strong wind, the device is arranged on the side of the shed main body and is provided with a supporting component, the buffer module is arranged in the supporting component, a part of the buffer module has a force guiding function, a part of the horizontal transmission force can be transmitted to the ground, and therefore the stability of the shed structure is greatly improved, and the shed and the agricultural products planted in the shed are effectively protected. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 is a greenhouse planting agricultural shed structure of the utility model Figure 1 .

[0016] Figure 2 is a greenhouse planting agricultural shed structure of the utility model Figure 2 .

[0017] Figure 3 is Figure 2 a partial structure diagram Figure 1 .

[0018] Figure 4 is Figure 2 a partial structure diagram Figure 1 .

[0019] Figure 5 is Figure 3 a structure diagram of A part

[0020] As shown in the figure: 1, frame rod, 2, plug rod, 3, support plate one, 4, main damper, 5, support plate two, 6, support rod, 7, sliding groove, 8, sliding block, 9, drive rod, 10, guide rod, 11, support block, 12, pressure rod, 13, vice damper, 14, plug, 15, screw, 16, pressing piece, 17, sliding rod, 18, limit block, 19, sleeve. DETAILED DESCRIPTION

[0021] The utility model makes further detailed description in combination with the drawings.

[0022] Example one

[0023] In combination with the drawings Figures 1-3 And the drawings Figure 5 To solve the above technical problem, the technical scheme provided by the utility model is: a greenhouse planting agricultural greenhouse structure, including frame rod 1, the frame rod 1 both sides bottom end are downwardly connected and are equipped with plug rod 2, the frame rod 1 both sides are connected and are equipped with support plate one 3, the fastening mechanism includes screw 15, the screw 15 is located support plate one 3 top rotary connection setting, the screw 15 is connected and is equipped with pressing piece 16, the pressing piece 16 both sides are connected and are equipped with with support plate one 3 mutual sliding connection is sliding rod 17, the sliding rod 17 extends to support plate one 3 near frame rod 1 one side connection and is equipped with limit block 18.

[0024] By a plurality of frame rods 1 in the shape of an arch in turn, the skeleton of the device is formed, and the plastic cloth is wrapped outside the skeleton, which is combined into the greenhouse we commonly see, in addition, doors, lamps and other facilities can be arranged in the greenhouse, which are all in the scope of the prior art, and have no direct influence on the technical design of reinforcing and improving the greenhouse in the application, so here is not too much redundant description, the difference is that the bottom end of each frame rod 1 is provided with a needle-shaped plug rod 2, which is inserted into the soil, which is beneficial to the stability of the greenhouse, and the support plate one 3 is erected on the ground outside the two sides of the greenhouse, and the frame rod 1 is inserted into the sleeve 19 on the support plate one 3, and forms a whole, and a plurality of fastening mechanisms are arranged on the support plate one 3, the pressing piece 16 is tightly attached to the support plate one 3 by rotating the screw 15, so as to clamp and fix the plastic cloth.

[0025] Example two

[0026] In combination with the drawings Figures 1-4The support plate one 3 is connected with a plurality of sleeves 19 matched with the frame rods 1 on one side, a plurality of fastening mechanisms are connected on the top of the support plate one 3, the support plate one 3 is connected with a support plate two 5 on the side away from the frame rods 1, a buffer group is connected between the support plate one 3 and the support plate two 5, the buffer group comprises a main damper 4 and a component force guiding mechanism, the main damper 4 and the component force guiding mechanism are connected between the support plate one 3 and the support plate two 5, the component force guiding mechanism comprises a sliding block 8, a plurality of sliding grooves 7 are connected on the support plate one 3, the sliding block 8 is connected with the support plate one 3 in the sliding groove 7, a support block 11 is connected on the support plate two 5, a driving rod 9 is connected between the sliding block 8 and the support block 11, a guide rod 10 is connected on the driving rod 9, a pressure bearing rod 12 is connected on the bottom of the guide rod 10, a secondary damper 13 is connected on the bottom of the pressure bearing rod 12, an insertion block 14 is connected below the secondary damper 13, a plurality of support rods 6 are connected on the side of the support plate two 5 away from the frame rods 1.

[0027] The plurality of main dampers 4 arranged between the support plate one 3 and the support plate two 5 can effectively alleviate the impact force of the greenhouse when it is tilted to the side after being affected by strong wind, the plurality of support rods 6 arranged on the outer side of the support plate two 5 form a relatively stable triangular structure, which can also improve the stability of the greenhouse body in this case, in addition to the main dampers 4 resolving the impact force, the component force guiding mechanism can change the transmission direction of the force received by the greenhouse horizontally to the ground, thereby effectively alleviating the force borne by the support plate two 5 and the support rods 6, wherein when the support plate one 3 obtains a tendency to move towards the support plate two 5 under stress, the sliding block 8 in the sliding groove 7 can only obtain a tendency to move upwards under the condition of being limited by the position of the driving rod 9, and the driving rod 9 obtains a tendency to gradually rotate to the vertical state, which affects the guide rod 10, the force is transmitted to the downward pressure bearing rod 12 through the guide rod 10 under the rotating tendency of the driving rod 9, the pressure bearing rod 12 is connected to the ground and also has a secondary damper 13 installed, this part of the dispersed force is borne by the ground, and part of it is resolved by the secondary damper 13, effectively protecting the greenhouse, the frame rods 1, the support plate two 5 and other parts, wherein the insertion block 14 for receiving and installing the secondary damper 13 also has the same effect as the insertion rod 2 in the above, and is inserted into the soil.

[0028] The utility model discloses in the specific implementation, through reasonable installation sequence, two support plate one 3, a certain amount of frame pole 1 and the plastic cloth as the big -arch shelter outer skin are spliced in proper order, wherein support plate one 3 has support plate two 5 and so on auxiliary assembly, also install, insert pole 2, insert block 14 etc. are inserted in the soil, can bury the soil and then use the foot to tread, iron spade to beat and so on mode to fasten, twist the screw rod 15 on support plate, use the tablet 16 to clamp the plastic cloth up, in the use process, the big -arch shelter lateral surface area is big, after receiving the strong wind blows, the force that strong wind applies to the big -arch shelter mainly spreads along the horizontal direction, make efforts and let the big -arch shelter fall on the ground, this force first through support plate one 3 to the support plate two 5 of periphery transmission, wherein force through the main damper 4 connecting support plate one 3 and support plate two 5 when, by the shock attenuation effect of main damper 4 and buffer a part, in addition because support plate one 3 and support plate two 5 between except installing multiple main damper 4, still set up multiple sets of component force guiding mechanism, under the action of the mechanism connecting rod transmission assembly, a part to support plate two 5 and apply pressure, by the transmission direction of this change, spread to the ground, these two combinations collocation, greatly relieve the impact that support plate two 5 originally need to bear, and the force of frame pole 1 part also transmits to go out, the whole device also can keep relative stability, will not be blown down, damage by strong wind, and the agricultural product in the big -arch shelter also has been protected.

[0029] The above describes the utility model and its implementation mode, and this kind of description has no limit, and the embodiment shown in the drawing is only one of the utility model, and the actual structure is not limited to this. In general, if the ordinary skilled person in the art is inspired, without departing from the utility model creation tenet, does not design the structure mode and the embodiment similar to this technical scheme creatively, all should belong to the protection scope of the utility model.

Claims

1. A greenhouse planting agricultural greenhouse structure comprising a frame rod (1), characterized in that: the frame rod (1) is connected with a support plate one (3) on both sides, the support plate one (3) is connected with a plurality of sleeve (19) matched with the frame rod (1) on one side, a plurality of fastening mechanisms are connected on the top of the support plate one (3), the support plate one (3) is connected with a support plate two (5) away from the frame rod (1) on one side, a buffer group is connected between the support plate one (3) and the support plate two (5), a plurality of support rods (6) are connected downwardly and obliquely on the side of the support plate two (5) away from the frame rod (1).

2. The agricultural greenhouse structure for greenhouse cultivation as claimed in claim 1, wherein: the fastening mechanism comprises a screw rod (15), the screw rod (15) is rotatably connected on the top of the support plate one (3), a pressing piece (16) is connected on the screw rod (15), slide rods (17) are connected on both sides of the pressing piece (16) and slidably connected with the support plate one (3), the slide rods (17) extend to the side of the support plate one (3) close to the frame rod (1) and are connected with limit blocks (18).

3. The greenhouse agricultural shed structure as claimed in claim 1, wherein: the buffer group comprises a main damper (4) and a force guiding mechanism, the main damper (4) and the force guiding mechanism are connected between the support plate one (3) and the support plate two (5).

4. The greenhouse agricultural shed structure as claimed in claim 3, wherein: the force guiding mechanism comprises a sliding block (8), a plurality of sliding grooves (7) are connected on the support plate one (3), the sliding block (8) is slidably connected with the support plate one (3) in the sliding grooves (7), a support block (11) is connected on the support plate two (5), a driving rod (9) is rotatably connected between the sliding block (8) and the support block (11), a guide rod (10) is rotatably connected on the driving rod (9), a pressure bearing rod (12) is rotatably connected on the bottom of the guide rod (10), a secondary damper (13) is connected on the bottom of the pressure bearing rod (12).

5. The greenhouse agricultural shed structure as claimed in claim 4, wherein: the frame rod (1) is connected with an insertion rod (2) downwardly on both sides, the secondary damper (13) is connected with an insertion block (14) below.