A heat preservation structure for a mushroom intelligent shelter
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- BEIJING TIANCHENG GUANTONG ENERGY TECH CO LTD
- Filing Date
- 2025-08-26
- Publication Date
- 2026-08-07
AI Technical Summary
[0005]本实用新型的目的在于提供一种菌菇智慧方舱用保温结构,以解决上述背景技术中提出的方舱壳体上没有阻隔外界温度的双层保温设计的问题
[0017] 1. In this utility model, the designed heat-insulating outer shell assembly, sealing plate and cover plate and heat-insulating outer shell cover the outside of the container mushroom house cabin. The heat-insulating outer shell is designed as a layer of heat insulation, which plays the role of isolating the external temperature and the container mushroom house cabin.
Smart Images

Figure CN224597178U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of mushroom cabin insulation technology, specifically relating to an insulation structure for a smart mushroom cabin. Background Technology
[0002] The Smart Mushroom Cabin is a modular mushroom cultivation device that integrates intelligent environmental control, IoT monitoring, and ecological recycling technologies. It has a container-like cabin structure and integrates sensors and actuators for temperature, humidity, light, CO2 concentration, wind speed, etc. It monitors, analyzes, and adjusts in real time through algorithms. The high-definition camera inside the cabin, combined with IoT technology, enables visualized monitoring of the entire mushroom growth process. The Smart Mushroom Cabin is a modular container cabin that combines various intelligent devices for mushroom cultivation and production.
[0003] When cultivating mushrooms outdoors in smart mushroom container, although the container monitors and regulates the internal temperature through various intelligent devices, there may be drastic temperature fluctuations in outdoor, wild, or complex climate environments. In cold regions with temperatures below -10°C, or in hot regions with temperatures above 35°C in summer and large diurnal temperature differences, extreme external temperatures can interfere with the entire container. These extreme external temperatures can be directly transmitted to the interior of the container, leading to uncontrolled internal temperature. The container-style container shell lacks insulation design to block external temperatures, which is a defect and needs to be improved.
[0004] Existing container-style mushroom cultivation cabins lack a double-layer insulation design on the cabin shell to block external temperatures when used outdoors. To address this, this application proposes an insulation structure for a smart mushroom cultivation cabin. Utility Model Content
[0005] The purpose of this utility model is to provide a thermal insulation structure for a smart mushroom container, so as to solve the problem mentioned in the background art that the container shell does not have a double-layer thermal insulation design to block the external temperature.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a heat-insulating structure for a smart mushroom cabin, comprising...
[0007] The support mechanism installed at the bottom of the container mushroom house includes a base, a welded moisture-proof steel plate and a support steel plate, with a partition plate welded between the moisture-proof steel plate and the support steel plate;
[0008] The heat-insulating outer shell assembly includes an heat-insulating outer shell covering the outside of the container mushroom house, a barrier mesh plate fixed between the container mushroom house and the heat-insulating outer shell by screws, a sealing plate fixed to one side of the heat-insulating outer shell by screws, and a cover plate connected to one side of the heat-insulating outer shell by hinges.
[0009] A hood-type heat-insulating airbag is installed between the container mushroom house cabin and the insulated outer shell, and a second air nozzle is fixedly connected to the hood-type heat-insulating airbag.
[0010] Preferably, the cross-section of the insulated outer shell is an inverted "U" shape, and side plates are fixed to the sides of the insulated outer shell by bolts.
[0011] Preferably, a positioning post penetrating the side plate is welded to the surface of the moisture-proof steel plate.
[0012] Preferably, a moisture-absorbing and moisture-proof membrane is glued to the inner wall of the insulated outer shell facing the container mushroom house.
[0013] Preferably, an aluminum foil reflective film is glued to the top surface of the insulated outer shell.
[0014] Preferably, the barrier mesh is an inverted "U" shaped structure, and a fixed circular plate is welded to one end of the barrier mesh, with the second air nozzle penetrating through the center of the fixed circular plate.
[0015] Preferably, an air bladder cavity is formed between the moisture-proof steel plate, the supporting steel plate, and the partition plate. A moisture-proof aluminum foil air bladder located in the air bladder cavity is provided between the supporting steel plate and the moisture-proof steel plate. A first air nozzle is fixedly connected to one end of the moisture-proof aluminum foil air bladder.
[0016] Compared with the prior art, the beneficial effects of this utility model are:
[0017] 1. In this utility model, the designed heat-insulating outer shell assembly, sealing plate and cover plate and heat-insulating outer shell cover the outside of the container mushroom house cabin. The heat-insulating outer shell is designed as a layer of heat insulation, which plays the role of isolating the external temperature and the container mushroom house cabin.
[0018] 2. In this utility model, the designed hood-type heat-insulating airbag, as a layer of heat-insulating design, together with the heat-insulating outer shell and the hood-type heat-insulating airbag, through the double-layer heat-insulating design, prevents extreme external temperatures from entering the container mushroom house cabin and causing the cabin environment to become out of control. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the structure of this utility model;
[0020] Figure 2 This is a schematic diagram of the main structure of the insulated outer shell of this utility model;
[0021] Figure 3 For the present utility model Figure 2 Enlarged structural diagram of section A in the middle;
[0022] Figure 4This is a three-dimensional structural diagram of the thermal insulation outer shell of this utility model;
[0023] Figure 5 This is a cross-sectional structural diagram of the thermal insulation outer shell of this utility model;
[0024] In the diagram: 1. Containerized mushroom house cabin; 2. Base; 3. Moisture-proof steel plate; 4. Supporting steel plate; 5. Moisture-proof aluminum foil airbag; 6. Insulated outer shell; 7. Barrier mesh plate; 8. Cover-type insulated airbag; 41. Divider support plate; 31. Positioning column; 51. First air nozzle; 61. Side plate; 62. Aluminum foil reflective film; 63. Moisture-absorbing and moisture-proof film; 64. Cover plate; 65. Sealing plate; 71. Fixed circular plate; 81. Second air nozzle. Detailed Implementation
[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0026] Please see Figures 1 to 5This utility model provides a technical solution: a heat-insulating structure for a smart mushroom container, including a support mechanism installed at the bottom of a container mushroom house 1, comprising a base 2, a welded moisture-proof steel plate 3 and a supporting steel plate 4, with a partition plate 41 welded between the moisture-proof steel plate 3 and the supporting steel plate 4. The base 2 is made of concrete and is fixed to the ground by bolts. The moisture-proof steel plate 3 is fixed to the base 2 by bolts. The base 2, the moisture-proof steel plate 3, and the supporting steel plate 4 provide support, moisture insulation, and heat insulation, preventing ground moisture and geothermal heat from entering the container mushroom house 1. The heat-insulating outer shell assembly includes an heat-insulating outer shell 6 covering the outside of the container mushroom house 1, a barrier mesh plate 7 fixed between the container mushroom house 1 and the heat-insulating outer shell 6 by screws, a sealing plate 65 fixed to one side of the heat-insulating outer shell 6 by screws, and a cover plate 64 connected to one side of the heat-insulating outer shell 6 by hinges. The heat-insulating outer shell 6 is installed... Outside the container mushroom house 1, the insulated outer shell 6 is made of highly weather-resistant aerogel composite material. As an insulation layer, the insulated outer shell 6 isolates the container mushroom house 1 from the external temperature. There is a gap between the container mushroom house 1 and the insulated outer shell 6 to prevent external temperature or moisture from directly contacting the container mushroom house 1. The sealing plate 65 and the cover plate 64 block the two sides of the insulated outer shell 6. The cover plate 64 can be opened and closed manually. A hood-type insulated airbag 8 is installed between the container mushroom house 1 and the insulated outer shell 6. The hood-type insulated airbag 8 is fixedly connected to a second air nozzle 81. The inflated hood-type insulated airbag 8 fills the space between the container mushroom house 1 and the insulated outer shell 6. The hood-type insulated airbag 8 is supported by a foam composite material. As an insulation layer, the hood-type insulated airbag 8 prevents extreme external temperatures from entering the container mushroom house 1 and causing the internal environment to become uncontrollable.
[0027] In this embodiment, the cross-section of the thermal insulation outer shell 6 is an inverted "U" shape. Side plates 61 are fixed to the sides of the thermal insulation outer shell 6 by bolts. Positioning posts 31 that penetrate the side plates 61 are welded to the surface of the moisture-proof steel plate 3. When the thermal insulation outer shell 6 is hoisted and installed, the positioning posts 31 limit the position of the side plates 61, so that the thermal insulation outer shell 6 and the side plates 61 are installed stably.
[0028] In this embodiment, a moisture-absorbing and moisture-proof membrane 63 is glued to the inner wall of the insulated outer shell 6 facing the container mushroom house 1. The moisture-absorbing and moisture-proof membrane 63 is made of polyethylene material and plays a role in moisture blocking. An aluminum foil reflective film 62 is glued to the top surface of the insulated outer shell 6. The aluminum foil reflective film 62 is made of aluminum foil composite film and plays a role in blocking infrared heat radiation.
[0029] In this embodiment, the blocking mesh plate 7 is an inverted "U" shaped structure. A fixed circular plate 71 is welded to one end of the blocking mesh plate 7. The second air nozzle 81 passes through the center of the fixed circular plate 71. Through an external inflation device, it can be connected to the second air nozzle 81 to realize the inflation operation of the cover-type heat preservation airbag 8 under manual operation.
[0030] In this embodiment, an air bladder cavity is formed between the moisture-proof steel plate 3, the supporting steel plate 4, and the partition plate 41. A moisture-proof aluminum foil air bladder 5 is provided between the supporting steel plate 4 and the moisture-proof steel plate 3, located in the air bladder cavity. A first air nozzle 51 is fixedly connected to one end of the moisture-proof aluminum foil air bladder 5. It can be connected to the first air nozzle 51 through an external inflation device, and the inflation operation of the moisture-proof aluminum foil air bladder 5 can be realized under manual operation.
[0031] Working principle and usage process of this utility model:
[0032] When installing the container mushroom house 1 outdoors, the container mushroom house 1 is installed on the supporting steel plate 4;
[0033] The insulated outer shell 6 is hoisted onto the outside of the container mushroom house 1 using a hoisting method. The positioning column 31 serves to limit the position of the side plate 61, thus ensuring the stability of the insulated outer shell 6 and the side plate 61 during installation.
[0034] The sealing plate 65 and the cover plate 64 block the two sides of the insulated outer shell 6. The sealing plate 65, the cover plate 64 and the insulated outer shell 6 cover the outside of the container mushroom house 1. The insulated outer shell 6 serves as an insulation layer to isolate the external temperature from the container mushroom house 1. There is a gap between the container mushroom house 1 and the insulated outer shell 6 to prevent extreme external temperatures or moisture from directly contacting the container mushroom house 1.
[0035] The moisture-absorbing and moisture-proof film 63 on the heat-insulating outer shell 6 blocks moisture, and the aluminum foil reflective film 62 on the top surface of the heat-insulating outer shell 6 plays a role in blocking infrared heat radiation.
[0036] Through an external inflation device, it can be connected to the second air nozzle 81 to realize the inflation operation of the cover-type heat preservation air bag 8 under manual operation. The cover-type heat preservation air bag 8 is filled between the container mushroom house cabin 1 and the heat preservation outer shell 6. The cover-type heat preservation air bag 8 is supported by a composite foam material. As a layer of heat preservation design, the cover-type heat preservation air bag 8 prevents extreme external temperatures from entering the container mushroom house cabin 1 and causing the cabin environment to become out of control.
[0037] An external inflation device can be connected to the first air nozzle 51 to inflate the moisture-proof aluminum foil airbag 5 under manual operation. The moisture-proof aluminum foil airbag 5 is designed as a moisture barrier.
[0038] In summary: This application adds a double-layer insulation design to the outer side of the container shell to block external temperature. The sealing plate 65, the cover plate 64, and the insulation outer shell 6 cover the outside of the container mushroom house 1. The insulation outer shell 6 serves as a layer of insulation design, which isolates the external temperature from the container mushroom house 1. The hood-type insulation airbag 8 serves as a layer of insulation design. Through the double-layer insulation design, extreme external temperatures are prevented from entering the container mushroom house 1 and causing the internal environment to become uncontrollable.
[0039] Although embodiments of the present invention have been shown and described (see the detailed description above), it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A heat-insulating structure for a smart mushroom cabin, characterized in that: include The support mechanism installed at the bottom of the container mushroom house (1) includes a base (2), a welded moisture-proof steel plate (3) and a support steel plate (4), and a partition plate (41) is welded between the moisture-proof steel plate (3) and the support steel plate (4); The heat-insulating outer shell assembly includes an heat-insulating outer shell (6) covering the outside of the container mushroom house (1), a barrier mesh plate (7) fixed between the container mushroom house (1) and the heat-insulating outer shell (6) by screws, a sealing plate (65) fixed to one side of the heat-insulating outer shell (6) by screws, and a cover plate (64) connected to one side of the heat-insulating outer shell (6) by hinges. A hood-type heat-insulating airbag (8) is installed between the container mushroom house cabin (1) and the heat-insulating outer shell (6), and a second air nozzle (81) is fixedly connected to the hood-type heat-insulating airbag (8).
2. The heat insulation structure for a smart mushroom cabin according to claim 1, characterized in that: The cross-section of the thermal insulation outer shell (6) is an inverted "U" shape, and a side plate (61) is fixed to the side of the thermal insulation outer shell (6) by bolts.
3. The heat insulation structure for a smart mushroom cabin according to claim 2, characterized in that: The surface of the moisture-proof steel plate (3) is welded with a positioning post (31) that penetrates the side plate (61).
4. The heat insulation structure for a smart mushroom cabin according to claim 1, characterized in that: A moisture-absorbing and moisture-proof membrane (63) is glued to the inner wall of the insulated outer shell (6) facing the container mushroom house (1).
5. The heat insulation structure for a smart mushroom cabin according to claim 1, characterized in that: An aluminum foil reflective film (62) is glued to the top surface of the insulated outer shell (6).
6. The heat insulation structure for a smart mushroom cabin according to claim 1, characterized in that: The barrier mesh (7) is an inverted "U" shaped structure. A fixed circular plate (71) is welded to one end of the barrier mesh (7), and the second air nozzle (81) passes through the center of the fixed circular plate (71).
7. The heat insulation structure for a smart mushroom cabin according to claim 1, characterized in that: An air bladder cavity is formed between the moisture-proof steel plate (3), the supporting steel plate (4), and the partition plate (41). A moisture-proof aluminum foil air bladder (5) is provided between the supporting steel plate (4) and the moisture-proof steel plate (3) and is located in the air bladder cavity. A first air nozzle (51) is fixedly connected to one end of the moisture-proof aluminum foil air bladder (5).