Splicing type intelligent edible mushroom planting room
The modular intelligent edible mushroom cultivation room design solves the problems of low automation and high management costs in traditional cultivation sheds, achieving automated control and rapid disassembly, reducing management costs and promoting resource recycling.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-14
- Publication Date
- 2026-03-24
AI Technical Summary
Traditional edible mushroom cultivation sheds have a simple structure, low level of automation, high management costs, waste of manpower and resources when dismantling, and cannot be recycled.
The modular intelligent edible mushroom cultivation room includes a detachable mushroom house, air conditioner, ultrasonic atomizing humidifier, LED light strip and control box. It is composed of a main frame, insulation board and connectors to achieve automated control and quick installation and disassembly.
It has enabled automated management of edible fungi cultivation, reduced management costs, shortened the construction cycle, and is easy to disassemble and recycle.
Smart Images

Figure CN224022507U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to edible mushroom planting equipment technical field, concretely relates to a spliced intelligent edible mushroom planting house. BACKGROUND
[0002] Edible mushroom refers to the fruit body of large mushroom (macrofungi) that can be used for food. There are more than 350 kinds of edible mushrooms known in China, most of which belong to Basidiomycota. Common edible mushrooms include shiitake, straw mushroom, mushroom, black fungus, tremella, hedgehog mushroom, bamboo grass, pine mushroom (pine mushroom), lentinus edodes, red mushroom, ganoderma lucidum, cordyceps, truffle, white mushroom and boletus etc. A small number of them belong to Ascomycota, including: morel, saddle fungus, truffle fungus, etc. The above-mentioned fungi grow in different regions and different ecological environments.
[0003] Traditional planting shed structure is simple, most of which are abandoned houses or temporary shacks, and the degree of automation is low. The planting management cannot be automatically controlled, and the construction process requires a professional team and multiple welding operations. When it needs to be removed, it will cause a large waste of manpower and material resources, and the disassembly cost is high, which cannot be recycled. UTILITY MODEL CONTENT
[0004] In order to solve the problems in the prior art, the utility model provides an automatic control system to solve the problems of low degree of automation of traditional planting, non-recyclable planting house and high cost.
[0005] In order to solve the above problems, the technical scheme of the utility model is as follows: a spliced intelligent edible mushroom planting house, comprising a detachable mushroom house, a plurality of air conditioners, a plurality of mushroom shelves, a plurality of ultrasonic atomizing humidifiers, a plurality of LED light strips, and a control box for controlling the air conditioners, ultrasonic atomizing humidifiers and LED light strips.
[0006] Further, the mushroom house comprises a main frame, and a heat preservation plate is arranged between the main frame.
[0007] Further, the main frame comprises a plurality of columns and a triangular beam arranged at the end of the column, and the column and the triangular beam are bolted through an L-shaped connecting sheet.
[0008] Further, the column is a longitudinal support square tube.
[0009] Further, the triangular beam comprises a horizontal support square tube, a longitudinal connecting square tube and two inclined support square tubes, the horizontal support square tube and the longitudinal connecting square tube are connected through a first connecting clamp, the longitudinal connecting square tube and the inclined support square tube are connected through a second connecting clamp, a connecting plate is arranged on both sides of the inclined support square tube, and a fastening bolt for fixing is arranged through the inclined support square tube, the longitudinal connecting square tube and the connecting plate.
[0010] Further, the first connecting card piece is convex, the bottom is a square opening, is matched with the horizontal support square tube, and a screw hole is arranged at the upper end of the first connecting card piece.
[0011] Further, the second connecting card piece is U-shaped, the U-shaped opening is matched with the width of the longitudinal connecting square tube and the oblique support square tube, and a screw hole is arranged at the upper end of the U-shaped opening.
[0012] Further, the heat preservation plate is a spliced cold storage heat preservation plate.
[0013] Further, the heat preservation plate on the triangular beam is bolted with the heat preservation plate on the side of the stand column through an L-shaped connecting sheet.
[0014] Further, a mushroom house air outlet is arranged on the mushroom house.
[0015] Compared with the prior art, the utility model has the following beneficial effects: the horizontal support square tube, the longitudinal connecting square tube, the oblique support square tube, the L-shaped connecting sheet, the first connecting card piece, the second connecting card piece and the spliced process construction main frame are adopted, and the traditional construction period is shortened;
[0016] Air conditioners, ultrasonic atomization pipelines and LED light strips are adopted to control the humidity, temperature and illumination of the planting house, automatic control is realized, and management cost is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is an appearance schematic view of the utility model;
[0018] Figure 2 It is an internal structure schematic view of the utility model;
[0019] Figure 3 It is a connecting schematic view of the horizontal support square tube and the longitudinal connecting square tube of the utility model;
[0020] Figure 4 It is a connecting schematic view of the longitudinal connecting square tube and the oblique support square tube of the utility model;
[0021] Figure 5 It is a connecting schematic view of the top end of the triangular beam of the utility model;
[0022] Figure 6 It is an appearance schematic view of the utility model Figure 1 It is an enlarged schematic view of position A of the utility model;
[0023] Figure 7 It is a schematic view of the first connecting card piece of the utility model;
[0024] Figure 8 It is a schematic view of the second connecting card piece of the utility model.
[0025] In the diagram: 1. Mushroom house; 2. Air conditioner; 201. Air outlet duct; 202. Fresh air inlet; 203. Indoor return air outlet; 204. Air conditioner outdoor unit; 3. Mushroom growing rack; 4. Ultrasonic atomizing humidifier; 5. Control box; 6. Mushroom house air outlet; 7. Insulation board; 8. Column; 9. Triangular beam; 901. Horizontal support square tube; 902. Longitudinal connecting square tube; 903. Diagonal support square tube; 904. First connecting clip; 905. Second connecting clip; 906. Connecting plate; 907. Fastening bolt; 908. Screw hole; 10. L-shaped connecting piece; 11. Screw. Detailed Implementation
[0026] like Figures 1-4 As shown, a modular intelligent edible mushroom cultivation room includes a detachable mushroom house 1, which is equipped with several air conditioners 2, several mushroom growing racks 3, several ultrasonic atomizing humidifiers 4, several LED light strips, and a control box 5 for controlling the air conditioners 2, ultrasonic atomizing humidifiers 4, and LED light strips. The mushroom house 1 is equipped with a mushroom house air outlet 6.
[0027] The air outlet duct 201 of the air conditioner 2 can run horizontally through the cultivation room. The fresh air inlet 202 and indoor return air outlet 203 of the air conditioner 2 are designed to have a 45° upward air outlet. The outdoor unit 204 of the air conditioner is located on the outer wall of the mushroom house 1 to reduce the impact of air flow generated by the air conditioner fan on the edible fungi. The internal and external circulation of the fresh air system are effectively combined to reduce the fluctuation of the indoor environment caused by the entry of fresh air into the room. The ultrasonic atomizing humidifier 4 includes an ultrasonic humidifier and an atomizing duct, which also runs horizontally through the cultivation room.
[0028] Mushroom house 1 includes a main frame, with insulation boards 7 installed between the main frames.
[0029] The main frame includes several columns 8 and triangular beams 9 at the ends of the columns. The columns 8 and triangular beams 9 are connected by L-shaped connecting pieces 10 and bolts. The columns 8 are longitudinal support square tubes.
[0030] like Figures 3-5 As shown, the triangular beam 9 includes a transverse support square tube 901, a longitudinal connecting square tube 902, and two oblique support square tubes 903. The transverse support square tube 901 and the longitudinal connecting square tube 902 are connected by a first connecting clip 904, and the longitudinal connecting square tube 902 and the oblique support square tube 903 are connected by a second connecting clip 905. Connecting plates 906 are provided on both sides of the oblique support square tube 903, and fastening bolts 907 for fixing are provided through the oblique support square tube 903, the longitudinal connecting square tube 902, and the connecting plates 906.
[0031] like Figure 7 As shown, the first connecting clip 904 is convex in shape with a square opening at the bottom, which is compatible with the horizontal support square tube 901. A screw hole 908 is provided at the upper end of the first connecting clip 904.
[0032] likeFigure 8 As shown, the second connecting clamping member 905 is shaped as a U type, the U type opening is matched with the width of the longitudinal connecting square tube 902 and the oblique supporting square tube 903, and a screw hole 908 is arranged at the upper end of the U type opening.
[0033] The bottom of the first connecting clamping member 904 and the second connecting clamping member 905 can be reinforced by screws.
[0034] The heat preservation plate 7 is a spliced cold storage heat preservation plate, the heat preservation plate 7 on the triangular beam 9 is bolted with the heat preservation plate 7 on the side of the stand column 8 through the L type connecting sheet 10.
[0035] The mushroom house 1 adopts a prefabricated square tube structure combined with a spliced cold storage heat preservation plate; the stand column 8 and the ground embedded part are connected by bolt fastening, supporting the triangular beam 9, and the connection of the triangular beam 9 is fastened by screws and coated with anti-rust paint; after the steel structure is completed, each wall plate is spliced and installed by using the spliced cold storage heat preservation plate, the wall plate is completed, the roof is installed, the top surface of one side of the triangular beam 9 is installed first, the spliced cold storage heat preservation plate is installed by splicing, the other side is installed after completion, and finally the top of the triangular beam 9 is sealed and waterproofed, the installation process does not require welding process, all splicing is fastened by bolts, the installation is convenient and fast, and the disassembly is convenient when not in use, and the recycling is used.
[0036] The control box 5 can detect the production time of each stage of the edible fungus bag according to the planting process requirements of each edible fungus, switch the mode of different stages according to the growth time, reduce the dependence on technical personnel, and can be well supervised for 24 hours, save labor cost and more effectively control the planting.
[0037] The above specific embodiments are only used to illustrate the technical solutions of the utility model and not to limit, although the utility model is described in detail with reference to examples, those skilled in the art should understand that the technical solutions of the utility model can be modified or replaced equivalently without departing from the scope of the technical solutions of the utility model, which should be covered in the scope of the claims of the utility model.
Claims
1. A modular intelligent edible mushroom cultivation room, characterized in that: The mushroom house comprises a detachable mushroom house, a plurality of air conditioners, a plurality of mushroom shelves, a plurality of ultrasonic atomizing humidifiers, a plurality of LED light strips, and a control box for controlling the air conditioners, the ultrasonic atomizing humidifiers and the LED light strips.
2. The spliced intelligent edible mushroom planting house according to claim 1, characterized in that: The mushroom house comprises a main frame, and heat insulation plates are arranged between the main frame.
3. The spliced intelligent edible mushroom planting house according to claim 2, characterized in that: The main frame comprises a plurality of vertical columns and triangular beams arranged at the ends of the vertical columns, and the vertical columns and the triangular beams are bolted by L-shaped connecting plates.
4. The spliced intelligent edible mushroom planting house according to claim 3, characterized in that: The vertical column is a longitudinal supporting square tube.
5. The spliced intelligent edible mushroom planting house according to claim 4, characterized in that: The triangular beam comprises a horizontal supporting square tube, a longitudinal connecting square tube, and two oblique supporting square tubes, the horizontal supporting square tube and the longitudinal connecting square tube are connected by a first connecting clamp, the longitudinal connecting square tube and the oblique supporting square tube are connected by a second connecting clamp, connecting plates are arranged on both sides of the oblique supporting square tube, and fastening bolts for fixation are arranged through the oblique supporting square tube, the longitudinal connecting square tube, and the connecting plates.
6. The spliced intelligent edible mushroom planting house according to claim 5, characterized in that: The first connecting clamp is convex-shaped, the bottom is a square opening, and the horizontal supporting square tube is adapted thereto, and a screw hole is arranged at the upper end of the first connecting clamp.
7. The spliced intelligent edible mushroom planting house according to claim 6, characterized in that: The second connecting clamp is U-shaped, the U-shaped opening is adapted to the width of the longitudinal connecting square tube and the oblique supporting square tube, and a screw hole is arranged at the upper end of the U-shaped opening.
8. The spliced intelligent edible mushroom planting house according to claim 3, characterized in that: The heat insulation plate is a spliced cold storage heat insulation plate.
9. The spliced intelligent mushroom planting house according to claim 8, characterized in that: The heat insulation plate on the triangular beam and the heat insulation plate on the side of the vertical column are bolted by L-shaped connecting plates.
10. The spliced intelligent edible mushroom planting house according to claim 1, characterized in that: An air outlet is arranged on the mushroom house.