Improved frame structure for buildings or greenhouses

TWM685156UActive Publication Date: 2026-07-11钟银乡
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Patent Information

Application Number
TW115201480
Authority / Receiving Office
TW · TW
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2026-02-11
Publication Date
2026-07-11
Estimated Expiration
2036-02-10

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    Figure IMG-2_DRAW_115201480-A0305-14-0002-2
  • Figure IMG-2_DRAW_115201480-A0305-14-0003-4
    Figure IMG-2_DRAW_115201480-A0305-14-0003-4
Patent Text Reader

Abstract

An improved frame structure for buildings or greenhouses comprises multiple frames including a base plate with two vertical plates extending vertically from both sides. A small plate extends horizontally from the free ends of the two vertical plates, forming the frame. The base plate has a plurality of elongated locking holes spaced apart. A reinforcing folding plate is provided at each end of both sides of the frame, instantly increasing its structural strength several times over. It also features partially or completely embossed grooves with staggered, diagonally spaced raised and recessed embossing within these grooves. Thus, a frame with a plate thickness of 1.2mm achieves the same rigidity and strength as a conventional frame with a plate thickness of 2.3mm. However, this invention features thinner and lighter plates, significantly reducing costs. The greenhouse constructed using this invention is also more robust and less prone to collapse.
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Description

Architectural or greenhouse improvement frame bodies Technical field

[0001] The present creation provides a technical field of a greenhouse, especially technically providing an architectural or greenhouse improved frame body with a reinforced reflex plate at the end of the small flat plate on each side of the frame body, so that the plane of the small flat plate forms a 3D three-dimensional U shape, the structural strength is instantly improved several times, and can be partially or fully embossed to form interlaced concave and convex grooves. Prior technology

[0002] According to, construction or greenhouse many places need to use the frame body, however the familiar frame body if its specific stiffness and strength when required, inevitably make the familiar frame body thickness must be thickened, the familiar frame body thickness thickening inevitably make its weight increase, also make its cost increase. Generally, farmers have limited income, and if the cost of building a greenhouse is too high, it will inevitably make most farmers back down. On the contrary, if it can provide a reasonably priced greenhouse with higher rigidity and strength than the commonly known greenhouse, it will inevitably make all farmers generally accepted and willing to purchase. On the other hand, some of the Xizhi greenhouses commonly used today are assembled in round tubes, but after several typhoon tests, it can be seen that many of the Xizhi greenhouses built in round tubes were blown down by typhoons. If we have to re-spend money to build greenhouses after a typhoon, it is also a considerable expense for farmers.

[0003] The creator of this creation developed the "Building or Greenhouse Improved Frame" earlier and filed a patent application for approval Certificate No. M564612.

[0004] Therefore, how to develop an innovative structure with more ideal practicality in response to the problem points existing in the above-mentioned learning structure is what consumers are eagerly awaiting and is also the goal and direction for relevant operators to strive for breakthroughs in research and development.

[0005] In view of this, the creator has been engaged in the manufacturing development and design of related products for many years. Contents of the invention

[0006] The main purpose of this invention is to provide an improved frame structure for buildings or greenhouses. Each of the small flat panels on both sides of the multiple frame structures is equipped with a reinforcing folding plate, which makes the plane of the small flat panels form a 3D U-shape, instantly increasing the structural strength several times. The structure can also be partially or completely embossed to form interlaced grooves. The grooves are pressed with interlaced diagonally spaced embossed points, so that the frame structure has the rigidity and strength of a thick plate with a thin thickness, and is lighter and less expensive.

[0007] To achieve the above objectives, this invention provides an improved frame structure for buildings or greenhouses, comprising: a plurality of frame structures, each including a base plate with two vertical plates extending vertically from both sides, and a small plate extending horizontally from the free ends of the two vertical plates, thus forming the frame structure. The base plate of the frame structure has a plurality of elongated locking holes spaced apart. Each end of the small plate on both sides of the frame structure has a reinforcing folding plate, forming a 3D U-shape on the plane of the small plate, instantly increasing the structural strength several times. The frame structure can be partially or completely embossed to form interlaced grooves, with interlaced diagonally spaced embossed points pressed into the grooves. Therefore, a frame structure with a plate thickness of 1.2mm has the same rigidity and strength as a conventional frame structure with a plate thickness of 2.3mm. However, this invention has thinner and lighter plates, resulting in a significant reduction in cost, allowing farmers to purchase greenhouses for planting at a lower price. Greenhouses constructed with this invention's square frame structure are also more robust and less prone to collapse than conventional round tube greenhouses.

[0008] Regarding the techniques, methods, and effects employed in this invention, a preferred embodiment is described below in detail with accompanying drawings. It is believed that the above-mentioned objectives, structure, and features of this invention can be understood in depth and in detail from this description. Simple Explanation of the Diagram

[0009]

[0010] [Figure 1] is a three-dimensional schematic diagram of one embodiment of this invention implemented in a greenhouse.

[0011] [Figure 2] is a three-dimensional schematic diagram of one embodiment of this invention.

[0012] Figure 3 is a side view of two embodiments of this invention.

[0013] Figure 4 is a side view of one of the three embodiments of this invention.

[0014] Figure 5 is a side view of one of the four embodiments of this invention.

[0015] Figure 6 is a side view of one of the five embodiments of this invention.

[0016] Figure 7 is a side view of one of the six embodiments of this invention.

[0017] Figure 8 is a side view of one of the seven embodiments of this invention. Implementation

[0018] This work is designed to provide an improved framework for a building or greenhouse.

[0019] To enable your review committee to gain a better understanding of the purpose, features, and effects of this work, the following detailed description, along with accompanying diagrams, is provided:

[0020] Referring to Figures 1 and 2, this invention provides a modified frame structure for a building or greenhouse, comprising:

[0021] A plurality of frame bodies 10, each frame body 10 including a reference plate 11, from which two vertical plates 12 and 13 extend integrally in a vertical direction on both sides. From the free ends of the two vertical plates 12 and 13, small plate bodies 14 and 15 extend integrally in a horizontal direction between them, thus forming the frame body 10. A plurality of elongated locking holes 16 are spaced apart on the reference plate 11 of the frame body 10. Its main features are:

[0022] The frame 10 has a reinforcing anti-folding plate 17 and 18 at the ends of the small flat plates 14 and 15 on both sides, so that the plane of the small flat plates 14 and 15 forms a 3D U-shape, instantly increasing the structural strength several times. The frame 10 has a width of (W), a height of (H), a width of (S) for the small flat plates 14 and 15, and a width of (T) for the reinforcing anti-folding plates 17 and 18. The frame 10 can be partially or completely embossed to form interlaced grooves 191. Interlaced diagonally arranged interlaced embossed points 192 are pressed into the grooves 191, so that the frame 10 has stronger rigidity and strength than conventional frames of the same thickness, and is lighter and cheaper.

[0023] Referring to Figure 1, the greenhouse 1()() shown is constructed using the frame 10. The frame 10 of this invention is square in design, which makes it more stable and structurally stronger than conventional round tube greenhouses. Therefore, it is not easily blown down by typhoons, saving farmers a lot of money on greenhouse maintenance and repair. The small flat plates 14 and 15 on both sides of the frame 10 of this invention are each provided with a reinforcing anti-folding plate 17 and 18, which makes the plane of the small flat plates 14 and 15 form a 3D U-shape, instantly increasing the structural strength several times. The frame 10 is partially or entirely provided with grooves 191, and the grooves 191 are provided with staggered embossed points 192. This makes the frame 10 of this invention, with a plate thickness of 1.2mm, have the same rigidity and strength as conventional frame with a thickness of 2.3mm. Moreover, this invention is thinner and lighter, and the cost is also more economical. Since greenhouse 100 generally requires a large number of frame 10s, the cumulative cost savings are considerable. Furthermore, its square frame structure is more resistant to strong winds than the conventional round tube greenhouse, thus saving farmers the expense of repairing or maintaining the greenhouse.

[0024] Referring to Figures 3 through 8, the modified frame of the building or greenhouse is described, wherein the width (T) of the reinforced inverted plate is between 3 mm and 35 mm.

[0025] Referring to Figures 3 to 8, the modified frame of the building or greenhouse may have a width (W) of 125mm, 100mm, 75mm, 60mm, 50mm or 41mm.

[0026] Referring to Figures 3 to 8, the height (H) of the frame 10 can be 50mm, 45mm, 41mm, 30mm or 25mm.

[0027] Referring to Figures 3 to 8, the modified frame structure of the building or greenhouse may have a width (S) of 15mm, 12mm, 10mm or 9.5mm for the small flat plates 14 and 15 of the frame 10.

[0028] As can be seen from the above, the improved frame structure for buildings or greenhouses created in this invention is indeed the first of its kind in the industry and meets the novelty requirements of a utility model patent. Its comprehensive innovative design meets the progressiveness requirements of a utility model patent. Each of the small flat panels on both sides of the multiple frame structures is equipped with a reinforcing folding plate at its end, which makes the plane of the small flat panels form a 3D U-shape, instantly increasing the structural strength several times. It can also form interlaced grooves by partial or complete embossing. The grooves are pressed with interlaced diagonally spaced embossed points, so that the frame structure has the rigidity and strength of a thick plate with a thin thickness, and is lighter and less expensive, which meets the requirements of better industrial application.

[0029] The foregoing description focuses on the preferred embodiments of this invention and their technical features; however, those skilled in the art can make changes and modifications to this invention without departing from its spirit and principles, and such changes and modifications should all be covered within the scope defined by the following claims.

[0030] In conclusion, this invention provides an improved frame structure for a building or greenhouse, which has indeed achieved all the objectives of this invention. Furthermore, the spatial form of its combined structure has not been seen in similar products, nor has it been disclosed before the application. Therefore, it complies with the provisions of the Patent Law, and thus this application is filed in accordance with the law.

[0031]

[0032] 100: Greenhouse

[0033] T: Reinforced anti-folding plate width

[0034] 10: Framework

[0035] 11: Reference Plate

[0036] 12: Vertical board

[0037] 13: Vertical board

[0038] 14: Small Tablet

[0039] 15: Small tablet

[0040] 16: Long lock hole

[0041] 17: Reinforced reverse folding plate

[0042] 18: Reinforced reverse folding plate

[0043] 191: Uneven grooves

[0044] 192: Alternating raised and recessed embossing

[0045] W: Width

[0046] H: Height

[0047] S: Small plate width

Claims

1. An improved frame structure for a building or greenhouse, comprising: A plurality of frame bodies, comprising a reference plate, two vertical plates integrally extending vertically from both sides of the reference plate, and a small plate integrally extending horizontally from the free ends of the two vertical plates to form the frame body. The reference plate of the frame body is provided with a plurality of elongated locking holes at intervals. The frame body is characterized by: a reinforcing anti-folding plate provided at the end of each of the small plates on both sides of the frame body, which greatly improves the structural strength of the frame body. The width of the frame body is (W), the height of the frame body is (H), the width of the small plate of the frame body is (S), and the width of the reinforcing anti-folding plate of the frame body is (T). The frame body can be partially or completely embossed to form staggered grooves, and staggered diagonally arranged intermittent embossed points are pressed into the grooves.

2. The modified frame structure of the building or greenhouse as described in claim 1, wherein the width (T) of the reinforced inverted plate is between 3 mm and 35 mm.

3. The modified building or greenhouse frame as described in claim 2, wherein the width (W) of the frame may be 125mm, 100mm, 75mm, 60mm, 50mm or 41mm.

4. The modified building or greenhouse frame as described in claim 3, wherein the height (H) of the frame may be 50mm, 45mm, 41mm, 30mm or 25mm.

5. The modified building or greenhouse frame as described in claim 4, wherein the width (S) of the small plate of the frame may be 15 mm, 12 mm, 10 mm or 9.5 mm.