Indoor plant growth frame
By incorporating a built-in fan and waterproof air guide plate into the indoor plant growth rack, the problem of insufficient ventilation for indoor plants is solved, achieving both ventilation and safety for plant growth, and improving the quality of the plant's growing environment.
Patent Information
- Application Number
- CN202423275213.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Insufficient ventilation during indoor plant growth leads to root rot and increased pests and diseases, and existing ceiling fan solutions are unsightly and pose safety risks.
Design an indoor plant growth rack with a built-in fan and waterproof air guide plate. The fan is hidden in the inner cavity of the shelf, the waterproof air guide plate is tilted, the fan blows the air upwards to the plant, and the ventilation holes are located at the bottom of the flower pot and on the back of the leaves to prevent water from flowing into the fan and improve the ventilation effect.
It effectively promotes plant ventilation, prevents root rot, reduces pests and diseases, is aesthetically pleasing and safe, enhances air exchange and photosynthesis in the plant's growing environment, and avoids the safety hazards caused by exposed fan blades.
Smart Images

Figure CN223714655U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to furniture field, specifically is an indoor plant growth rack. BACKGROUND
[0002] With the improvement of urban living standards, more and more people like to use indoor plant growth rack to plant potted plants. In the process of plant growth, sunlight, water, fertilizer and ventilation are essential, and ventilation is often the least valued and is limited by the closed space of the building and is not easy to achieve. In fact, good ventilation can accelerate the evaporation of moisture, and after watering the plants, timely ventilation can evaporate the moisture with the air quickly, which can effectively prevent the plant from rotting the roots, and also can blow away bacteria and fungi, reduce the occurrence of diseases and pests. In addition, ventilation is also very beneficial to the photosynthesis and respiration of plants. In a closed environment, the content of oxygen and carbon dioxide will be uneven, which will affect the normal photosynthesis and respiration of plants and will affect the growth of plants. Ventilation can continuously exchange fresh air, and indoor air humidity will not be too large due to the rising effect of plants, and the plants will not have yellow leaves and poor growth.
[0003] In addition, in the planting of some high-value plants such as orchids, good ventilation can also quickly dry the water remaining between the leaf centers due to watering, thereby effectively preventing the occurrence of orchid soft rot and stem rot. Some orchid planters will not hesitate to install ceiling fans on the growth rack in order to achieve good ventilation, which is not only unsightly, but also has certain danger. CONTENT OF THE UTILITY MODEL
[0004] The utility model aims at providing an indoor plant growth rack, which can promote the ventilation of the planting plant environment, is beneficial to the growth of plants, and is aesthetic and safe.
[0005] In order to solve the above technical problems, the utility model adopts the specific scheme as follows: an indoor plant growth rack, which comprises stand plates distributed at intervals and layer plates arranged between the stand plates, the layer plates are used for placing flowerpots for planting plants, the layer plates have inner cavities, a plurality of corresponding fans and waterproof wind deflectors are arranged in the inner cavities and spaced apart along the longitudinal direction of the layer plates, the waterproof wind deflectors are located above the fans, the waterproof wind deflectors are arc-shaped and the centers of the arcs are distributed upward, flowerpot placing positions are formed on the layer plates at positions between adjacent two waterproof wind deflectors, and ventilation holes are formed in the flowerpot placing positions.
[0006] Preferably, the layer plate comprises a top plate, a bottom plate and a back plate connected between the top plate and the bottom plate, a turning plate is further arranged on the side of the bottom plate away from the back plate, and a semi-closed water storage cavity is formed by the turning plate, the bottom plate and the back plate.
[0007] Preferably, a water faucet connected to the water storage cavity is arranged on the side of the layer plate.
[0008] Preferably, the back plate, waterproof air deflector, bottom plate and turning plate are all steel plates, the vertical plate and the top plate are both supported by wooden strips, and the gaps between the wooden strips of the top plate form the ventilation holes.
[0009] Preferably, the thickness of the back plate, waterproof air deflector, bottom plate and turning plate is 0.8-1mm.
[0010] Preferably, the waterproof air deflector is distributed in an inclined manner.
[0011] Preferably, the waterproof air deflector and the fan are both fixed on the back plate.
[0012] Preferably, the outer edge of the waterproof air deflector extends beyond the outer edge of the fan.
[0013] The layer plate in the utility model has an inner cavity, and a plurality of fans for ventilating plants are arranged in the inner cavity, so that the ventilation effect of the plant growth environment can be enhanced by the fans, and the plants can maintain a good growth state. Since the fans are hidden in the inner cavity of the layer plate, they will not be as conspicuous as external ceiling fans and affect the appearance, and will not cause safety risks due to the exposure of the fan blades.
[0014] The utility model further comprises a waterproof air deflector above the fans in the inner cavity, which can prevent water flowing out from the bottom of the flowerpot from directly flowing onto the fans and causing damage to the fans.
[0015] In addition, the flowerpot placing position of the utility model is arranged between two adjacent waterproof air deflectors, and the wind generated by the fan blows upward along the vertical direction, so that on the one hand, a part of the wind can blow into the flowerpot through the water-permeable holes in the bottom of the flowerpot, thereby further accelerating the evaporation of water in the flowerpot and the dry-wet circulation of the plant root growth environment, and further reducing the occurrence of root rot; on the other hand, another part of the wind blows the back side of the plant leaves from below to above, and the stomata on most of the plant leaves are located on the back side of the leaves, so that compared with the ventilation mode of blowing from top to bottom, the respiration of the plant leaves can be more beneficial, and the plant growth is further beneficial. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 Fig. 1 is a structural schematic view of the utility model;
[0017] Figure 2 Fig. 2 is a structural schematic view of the utility model in A-A direction; Figure 1
[0018] Fig. 1 is a structural schematic view of the utility model; DETAILED DESCRIPTION
[0019] As Figure 1 shown, the indoor plant growth rack of the utility model, same as the conventional plant growth rack in the market, both includes two vertical plates 2 which are distributed left and right and two layer plates 1 which are arranged between the two vertical plates 2. The layer plate 1 is distributed along the horizontal direction, and the end part is fixedly connected with the corresponding side vertical plate 2 through the fastener to complete the assembly of the growth rack, so that the flowerpot can be carried on the layer plate 1.
[0020] Different from the conventional plant growth rack, the layer plate 1 in the utility model is a three-dimensional structure, and as Figure 2 shown, it includes a top plate 102, a bottom plate 104, a back plate 105 and a turning plate 105, and is composed of a semi-closed inner cavity 103 by the top plate 102, the bottom plate 104, the back plate 105 and the turning plate 105. And in the inner cavity 103, five fans 6 and five waterproof wind deflectors 5 are arranged in the horizontal direction one by one in the upper and lower direction, and the fan 6 and the waterproof wind deflector 5 are cooperatively installed on the back plate 105. The wind direction of the fan 6 is from the bottom to the top, the cross section of the waterproof wind deflector 5 is arc-shaped, and the arc center is upward.
[0021] Through the above structure, the flowerpot placing position 4 is formed between the adjacent two waterproof wind deflectors 5 on the top plate 102, and a plurality of ventilation holes 101 are formed on the top plate 102 corresponding to the flowerpot placing position 4. The opening range of the ventilation hole 101 is greater than the projection area of the flowerpot, so that Figure 1 as shown, the wind generated by the fan 6 is guided by the waterproof wind deflector 5 and passes out upward through the ventilation hole 101, and a part of the wind directly blows upward through the water-permeable hole at the bottom of the flowerpot to accelerate the spray indoor dry-wet cycle; another part of the wind blows upward along the outer part of the flower disc to promote the respiration of the stomata on the back side of the leaf.
[0022] The turning plate 105 does not close the front space of the top plate 102 and the bottom plate 104, which not only avoids the water flowing out from the front side of the bottom plate 104, but also leaves space for the maintenance and replacement of the fan.
[0023] In addition, in order to avoid the excess water in the flowerpot flowing to the fan 6 through the water-permeable hole due to excessive watering, the outer edge of the waterproof wind deflector 5 of the utility model extends beyond the outer edge of the fan 6, and the waterproof wind deflector 5 is inclinedly distributed, so that the water received thereon can fall to the bottom plate 104 under the action of its own gravity together with the water flowing down through the ventilation hole 101, and can be discharged through the water faucet 3 arranged on the side of the layer plate 1.
[0024] In this embodiment, the back plate 105, the waterproof baffle 5, the bottom plate 104 and the turning plate 105 in contact with water for a long time are all steel plates, which play a good anti-corrosion role, and because there is no need to bear excessive load, the thickness can be 0.8-1mm. The vertical plate 2 and the top plate 102 are both supported by wooden strips spaced apart, and the gap between the wooden strips of the top plate 102 forms the ventilation hole 101. Because the vertical plate 2 and the top plate 102 occupy a large proportion of the visible part of the utility model, the use of wooden strips can significantly improve the aesthetic level of the utility model, and the planting plants are more matched and complementary, so that the utility model has more market promotion value.
Claims
1. An indoor plant growing rack comprising vertically spaced uprights (2) and horizontal shelves (1) disposed between the uprights (2) on which shelves (1) pots for growing plants are placed, characterised in that: The layer board (1) has an inner cavity (103), a plurality of corresponding fans (6) and waterproof wind deflectors (5) are arranged in the inner cavity (103) and spaced along the longitudinal direction of the layer board (1), the waterproof wind deflectors (5) are located above the fans (6), the waterproof wind deflectors (5) are arc-shaped and the centers of the arcs are distributed upward, a flowerpot placing position (4) is formed on the layer board (1) at a position between two adjacent waterproof wind deflectors (5), and a ventilation hole (101) is formed at the flowerpot placing position (4).
2. An indoor plant growing stand as claimed in claim 1, characterized in that: The layer board (1) comprises a top plate (102), a bottom plate (104) and a back plate (105) connected between the top plate (102) and the bottom plate (104), a turning plate (106) is further arranged on the bottom plate (104) and away from the back plate (105), and a semi-closed water storage cavity is formed by the turning plate (106), the bottom plate (104) and the back plate (105).
3. An indoor plant growing stand as claimed in claim 2, characterized in that: A water faucet (3) is connected to the side of the layer board (1) and used for draining water in the water storage cavity.
4. An indoor plant growing stand as claimed in claim 2, wherein: The back plate (105), the waterproof wind deflector (5), the bottom plate (104) and the turning plate (106) are all steel plates, the vertical plate (2) and the top plate (102) are both supported by wooden strips, and gaps between the wooden strips of the top plate (102) form the ventilation holes (101).
5. An indoor plant growing stand as claimed in claim 4, characterized in that: The thickness of the back plate (105), the waterproof wind deflector (5), the bottom plate (104) and the turning plate (106) is 0.8-1 mm.
6. An indoor plant growing stand as claimed in claim 2, wherein: The waterproof wind deflectors (5) are obliquely distributed.
7. An indoor plant growing stand as claimed in claim 6, characterized in that: The waterproof wind deflectors (5) and the fans (6) are both fixed on the back plate (105).
8. An indoor plant growing stand as defined in claim 1, characterized in that: The outer edges of the waterproof wind deflectors (5) extend beyond the outer edges of the fans (6).