Environment-friendly nonmetal high-strength fiber fireproof plate prefabricated cabin
By designing an environmentally friendly non-metallic high-strength fiber fireproof prefabricated cabin, and utilizing drive adjustment components and support sliding components to achieve flexible adjustment of the electrical control cabinet, the problems of long construction period, difficult adjustment, and poor fire safety in traditional power equipment installation schemes have been solved, achieving rapid construction, environmental protection and energy saving, and efficient operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-07
- Publication Date
- 2026-04-10
AI Technical Summary
Traditional power equipment installation solutions, such as building houses on-site or modifying ordinary shipping containers, suffer from problems such as long construction periods, the need for a large amount of manpower and resources, significant weather-related impacts, difficulty in rapid construction, insufficient fire safety, difficulty in equipment adjustment, and poor environmental performance.
Design an environmentally friendly non-metallic high-strength fiber fireproof prefabricated cabin, which is equipped with a drive adjustment component and a support sliding component. The output motor drives the moving platform to move on a circular track, realizing flexible adjustment of the electrical control cabinet. It is equipped with photovoltaic power supply to improve the convenience of equipment operation and space utilization.
It enables rapid installation, maintenance, and repair of electrical control equipment, improves equipment layout flexibility, increases space utilization and environmental friendliness, reduces energy consumption, and enhances fire safety.
Smart Images

Figure CN224110681U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] Embodiments of the present disclosure relate to the technical field of prefabricated cabin, in particular, to an environmentally friendly non-metallic high-strength fiber fireproof plate prefabricated cabin. BACKGROUND
[0002] In the field of modern industry and energy, the running stability, safety and environmental protection of various equipment and systems are increasingly valued. With the vigorous development of new energy industry, the scale of projects such as photovoltaic power stations and wind farms is continuously expanding, and the requirements for supporting facilities are increasingly stringent.
[0003] In the traditional power equipment arrangement scheme, it is common to use on-site housing construction or ordinary container modification to place electric control equipment. However, these methods have many drawbacks. On-site housing construction not only has a long construction period, requires a large amount of manpower and material resources, and is greatly affected by external factors such as weather, making it difficult to meet the demand for rapid construction. The space of ordinary container modification has serious deficiencies in fire prevention, heat insulation, and the convenience of supporting and adjusting internal equipment. For example, in some high-temperature areas, the internal temperature of ordinary containers is too high, which can easily cause the electric control equipment to run unstably or even malfunction. Moreover, when the position or layout of the electric control equipment needs to be adjusted, the traditional method is extremely difficult to operate, consuming a large amount of time and cost. In terms of fire safety, there is a certain risk of fire when the power equipment is running. Once a fire occurs, the traditional building structure or modified container cannot quickly and effectively stop the spread of the fire, which can cause devastating damage to the equipment and even cause more serious safety accidents. In the context of increasingly stringent environmental protection requirements, traditional materials and construction methods are also difficult to meet the demand for sustainable development in terms of resource consumption and waste emission. CONTENT OF THE UTILITY MODEL
[0004] To overcome the above-mentioned defects, embodiments of the present disclosure provide an environmentally friendly non-metallic high-strength fiber fireproof plate prefabricated cabin, which solves the technical problem that in the traditional power equipment arrangement scheme, the method of using on-site housing construction or ordinary container modification to place electric control equipment is common, but these methods have many drawbacks. On-site housing construction not only has a long construction period, requires a large amount of manpower and material resources, and is greatly affected by external factors such as weather, making it difficult to meet the demand for rapid construction.
[0005] According to one aspect, at least one embodiment of the present disclosure provides an environmentally friendly non-metallic high-strength fiber fireproof plate prefabricated cabin, comprising:
[0006] a cabin body, the inside of the cabin body is provided with an electric control cabinet;
[0007] a driving adjustment assembly, the driving adjustment assembly is arranged at the lower end of the electric control cabinet;
[0008] Support sliding assembly, which is arranged at the inner bottom of the cabin body;
[0009] The drive adjustment assembly comprises a ring-shaped track arranged at the inner bottom surface of the cabin body, a moving table arranged on the ring-shaped track, and an electric control cabinet arranged on the moving table. An installation ring is arranged inside the ring-shaped track. A moving wheel is arranged on the inner side wall of the installation ring. A drive shaft is arranged inside the moving wheel. A drive disc is arranged on the side wall of the drive shaft. An output motor is arranged on the outer side wall of the drive disc. The output end of the output motor is fixedly connected with the drive disc. The upper end of the drive disc is connected with the moving table.
[0010] As a further technical solution, the moving wheel is in contact with the inner bottom surface of the ring-shaped track. The number of output motors is two. Two output motors are arranged on opposite sides of the installation ring.
[0011] As a further technical solution, the support sliding assembly comprises a support frame arranged on the upper end surface of the drive disc. A support stand is arranged on the upper end of the support frame. The top of the support stand is fixedly connected with the moving table.
[0012] As a further technical solution, the inside of the support frame is provided with an embedded groove. A limiting wheel is arranged in the embedded groove. The limiting wheel is in contact with the upper end surface of the installation ring. The limiting wheel and the embedded groove are connected by a pin shaft.
[0013] As a further technical solution, a positioning groove is formed in the upper end surface of the moving table. An expanded positioning hole is arranged on the inner bottom surface of the positioning groove. The expanded positioning hole is located at the four corners of the bottom of the positioning groove.
[0014] As a further technical solution, the number of electric control cabinets is several. Multiple electric control cabinets are arranged on the moving table. An electric control buckle is arranged on the electric control cabinet.
[0015] As a further technical solution, an operation port is arranged on the side wall of the cabin body. An operation buckle plate is arranged on the operation port. The operation buckle plate is connected to the edge of the operation port by a pin shaft.
[0016] As a further technical solution, a laying plate is arranged on the top of the cabin body. A photovoltaic panel is arranged on the upper end surface of the laying plate.
[0017] As a further technical solution, the ring-shaped track and the installation ring are both circular structures.
[0018] As a further technical solution, the cross section of the installation ring is in a T-shaped structure. The moving wheels are embedded on opposite sides of the installation ring.
[0019] The embodiments of the present disclosure have the following beneficial effects:
[0020] 1、In the present disclosure, a driving adjustment assembly is arranged in the prefabricated cabin, a driving disc is driven by an output motor, and then the moving table moves on the annular track, so that the position of the electric control cabinet can be conveniently adjusted, the installation, maintenance and repair of the equipment are facilitated, the equipment layout in the cabin can be flexibly changed according to actual needs, and the space utilization rate and the convenience of equipment operation are improved.
[0021] 2、In the present disclosure, the illumination inside the prefabricated cabin, the power supply of the dehumidification equipment and the like can be realized by converting the electric energy through the photovoltaic panel, and the energy is saved. BRIEF DESCRIPTION OF DRAWINGS
[0022] In order to more clearly illustrate the technical solutions in the embodiments of the present disclosure, the drawings needed to be used in the description of the embodiments of the present disclosure will be briefly introduced. Obviously, the drawings in the following description are only some example embodiments of the present disclosure. Other drawings can be obtained by those skilled in the art without creative labor on the basis of the contents of the example embodiments of the present disclosure and the drawings.
[0023] Figure 1 The structural schematic diagram in an embodiment of the present disclosure is shown in the figure;
[0024] Figure 2 The cross-sectional view of the cabin body of the present disclosure is shown in the figure;
[0025] Figure 3 The annular track cross-sectional view of the present disclosure is shown in the figure;
[0026] Figure 4 The moving table shaft side view of the present disclosure is shown in the figure;
[0027] In the figure: 1, cabin body; 2, electric control cabinet; 3, driving adjustment assembly; 3-1, annular track; 3-2, moving table; 3-3, mounting ring; 3-4, moving wheel; 3-5, driving shaft; 3-6, driving disc; 3-7, output motor; 4, support sliding assembly; 4-1, support frame; 4-2, support column; 4-3, embedded groove; 4-4, limiting wheel; 5, positioning groove; 6, expanded positioning hole; 7, electric control cover; 8, operation port; 9, operation buckle plate; 10, laying plate; 11, photovoltaic panel. DETAILED DESCRIPTION
[0028] The present disclosure will be further described in detail below in combination with the drawings and examples. It can be understood that the specific examples described herein are only used to explain the present disclosure, but not to limit the present disclosure.
[0029] For the simplicity of the drawings, only the parts related to the disclosure are shown in the drawings, and they do not represent the actual structure of the product. In addition, in order to make the drawings simple and easy to understand, in some drawings, only one of the parts with the same structure or function is shown schematically, or only one of them is marked. In this document, "one" not only means "only one", but also means "more than one", and "several" includes "two" and "more than two".
[0030] In this document, it should be noted that unless otherwise explicitly specified and limited, the terms "mount", "connect", "connect" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium, or it can be connected inside two elements. For those skilled in the art, the specific meaning of the above terms in the disclosure can be understood according to the specific circumstances.
[0031] In this disclosure, unless otherwise explicitly specified and limited, "on" or "under" the first feature of the second feature can include that the first and second features are in direct contact, or that the first and second features are not in direct contact but are in contact through another feature between them. Moreover, the first feature "on", "above" and "above" the second feature includes that the first feature is directly above and obliquely above the second feature, or only indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature "below", "below" and "below" the second feature includes that the first feature is directly below and obliquely below the second feature, or only indicates that the horizontal height of the first feature is less than that of the second feature.
[0032] In the description of the present embodiment, the terms "up", "down", "left", "right" and other orientation or position relationships are based on the orientation or position relationship shown in the drawings, and are only for the convenience of description and simplification of operation, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present disclosure.
[0033] In addition, in the description of the present application, the terms "first", "second" and the like are only used to distinguish the description and cannot be understood as indicating or implying relative importance.
[0034] As Figures 1-4 shown, it shows an environmentally friendly non-metallic high-strength fiber fireproof plate prefabricated cabin of the present disclosure, comprising:
[0035] The cabin body 1 is internally provided with an electric control cabinet 2;
[0036] The driving adjustment assembly 3 is arranged at the lower end of the electric control cabinet 2;
[0037] The support sliding assembly 4 is arranged on the inner bottom of the cabin 1.
[0038] The drive adjusting assembly 3 comprises a ring track 3-1 arranged on the inner bottom of the cabin 1, a moving table 3-2 arranged on the ring track 3-1, and an electric control cabinet 2 arranged on the moving table 3-2. The inside of the ring track 3-1 is provided with a mounting ring 3-3, the inner side wall of the mounting ring 3-3 is provided with a moving wheel 3-4, the inside of the moving wheel 3-4 is provided with a drive shaft 3-5, the side wall of the drive shaft 3-5 is provided with a drive disc 3-6, the outer side wall of the drive disc 3-6 is provided with an output motor 3-7, the output end of the output motor 3-7 is fixedly connected with the drive disc 3-6, and the upper end of the drive disc 3-6 is connected with the moving table 3-2.
[0039] The support sliding assembly 4 comprises a support frame 4-1 arranged on the upper end surface of the drive disc 3-6, and a support stand 4-2 arranged on the upper end of the support frame 4-1 and fixedly connected with the moving table 3-2.
[0040] In some examples, the ring track 3-1 is accurately installed on the inner bottom of the cabin 1. The ring track 3-1 should be ensured to be horizontal and fixed firmly, the center of the circular structure of the ring track 3-1 is as much as possible to coincide with the center of the cabin 1, so as to ensure the stability of the subsequent moving table 3-2 operation. The ring track 3-1 can be connected with the bottom of the cabin 1 by pre-buried bolts or welding. The moving table 3-2 is installed on the ring track 3-1, and the connection between the moving table 3-2 and the ring track 3-1 should be ensured to be smooth sliding and have a certain stability, so as to prevent shaking or deviation during movement. The size and structure design of the moving table 3-2 should be adapted to the electric control cabinet 2, so as to ensure that the electric control cabinet 2 can be stably placed on the moving table 3-2. The mounting ring 3-3 is installed in the ring track 3-1, the mounting ring 3-3 is also a circular structure and concentric with the ring track 3-1, the cross section of the mounting ring 3-3 is in T-shaped structure, the moving wheel 3-4 is embedded on the opposite sides of the mounting ring 3-3, the drive shaft 3-5 is installed in the moving wheel 3-4, the drive disc 3-6 is installed on the side wall of the drive shaft 3-5, the output motor 3-7 is fixed on the mounting ring 3-3 and fixedly connected with the drive disc 3-6, the two output motors 3-7 are arranged on the opposite sides of the mounting ring 3-3 and synchronously operated during work, so as to ensure the stable rotation of the drive disc 3-6 and the moving table 3-2. The upper end of the drive disc 3-6 is fixed by welding or bolt connection, so that the drive disc 3-6 can drive the moving table 3-2 to move on the ring track 3-1 when the drive disc 3-6 rotates.
[0041] A support frame 4-1 is installed on the upper end face of the driving disc 3-6, and the support frame 4-1 is designed to stably support the support column 4-2 and the moving table 3-2 above, and the support frame 4-1 can be fixed with the driving disc 3-6 by welding or bolt connection and the like, and the support column 4-2 is installed on the upper end of the support frame 4-1, and the top of the support column 4-2 is fixedly connected with the moving table 3-2 to provide vertical support for the moving table 3-2 and ensure the stability of the moving table 3-2 during movement, and the connection between the support column 4-2 and the support frame 4-1 and the moving table 3-2 is firm and reliable, and the limiting wheel 4-4 is in contact with the upper end face of the installation ring 3-3, and during the movement of the moving table 3-2, the limiting wheel 4-4 limits the vertical displacement of the moving table 3-2 to ensure smooth operation of the moving table 3-2.
[0042] As shown in Figures 1-4 , the present embodiment proposes that the moving wheel 3-4 is in contact with the inner bottom surface of the annular track 3-1, and the number of output motors 3-7 is 2, and the two output motors 3-7 are arranged on the opposite sides of the installation ring 3-3.
[0043] For example, as shown in Figure 3 , the inside of the support frame 4-1 is provided with an embedded groove 4-3, and the limiting wheel 4-4 is arranged in the embedded groove 4-3, and the limiting wheel 4-4 is in contact with the upper end face of the installation ring 3-3, and the limiting wheel 4-4 is connected with the embedded groove 4-3 through a pin shaft.
[0044] In some examples, an embedded groove 4-3 is opened in the inside of the support frame 4-1, and the limiting wheel 4-4 is installed in the embedded groove 4-3, and the limiting wheel 4-4 is connected with the embedded groove 4-3 through a pin shaft, so that the limiting wheel 4-4 can rotate freely.
[0045] For example, as shown in Figure 4 , the upper end face of the moving table 3-2 is provided with a positioning groove 5, and the inside bottom surface of the positioning groove 5 is provided with an expanded positioning hole 6, and the expanded positioning hole 6 is located at the four corners of the bottom of the positioning groove 5.
[0046] In some examples, the shape and size of the positioning groove 5 are designed according to the bottom structure of the electric control cabinet 2, so as to facilitate accurate placement and positioning of the electric control cabinet 2, and the expanded positioning hole 6 is arranged at the four corners of the bottom of the positioning groove 5, and the expanded positioning hole 6 can be used to install a positioning pin or the like, further fixing the electric control cabinet 2, and preventing displacement of the electric control cabinet 2 during movement of the moving table 3-2.
[0047] For example, as shown in Figure 2 , the number of electric control cabinets 2 is several, and a plurality of electric control cabinets 2 are arranged on the moving table 3-2, and the electric control cabinet 2 is provided with an electric control cover 7.
[0048] In some examples, the electric control cover 7 is used to buckle at the opening of the electric control cabinet 2, so as to protect the internal elements of the electric control cabinet 2.
[0049] For example, as shown in Figure 1 The side wall of the cabin 1 is provided with an operation port 8, and the operation port 8 is provided with an operation buckle plate 9 which is connected to the edge of the operation port 8 by a pin shaft.
[0050] In some examples, the operation port 8 is opened on the side wall of the cabin 1 according to the operation requirement, and the size and position of the operation port 8 are convenient for personnel to operate and maintain the electric control cabinet 2 in the cabin. The operation buckle plate 9 is connected to the edge of the operation port 8 by a pin shaft, and the operation buckle plate 9 can rotate around the pin shaft to open and close the operation port 8, so as to facilitate operation and play a protective and sealing role when closed.
[0051] For example, as shown in Figure 1 The top of the cabin 1 is provided with a laying plate 10, and the upper end surface of the laying plate 10 is provided with a photovoltaic panel 11.
[0052] In some examples, the laying plate 10 is installed on the top of the cabin 1, and the material and structure of the laying plate 10 can bear the weight of the photovoltaic panel 11 and the influence of the external environment. The photovoltaic panel 11 is installed on the upper end surface of the laying plate 10, and the installation angle and layout of the photovoltaic panel 11 are designed according to the local light conditions to ensure that the solar energy can be absorbed to the maximum extent and converted into electric energy to provide part of the electric power support for the equipment in the cabin, so as to realize energy saving and environmental protection.
[0053] For example, as shown in Figure 2 The annular track 3-1 and the mounting ring 3-3 are both circular structures, the cross section of the mounting ring 3-3 is a T-shaped structure, and the moving wheels 3-4 are embedded on the opposite sides of the mounting ring 3-3.
[0054] In use, the support frame 4-1 is installed on the upper end surface of the driving disc 3-6, and the support column 4-2 is connected to the upper end of the support frame 4-1 and fixed with the mobile platform 3-2. The working principle is based on the support principle in mechanics. The support frame 4-1 and the support column 4-2 jointly bear the weight of the mobile platform 3-2 and the electric control cabinet 2, and transmit these gravity to the driving disc 3-6. During the movement of the mobile platform 3-2, the support column 4-2 always remains vertical, ensuring the stability of the mobile platform 3-2 when moving in the horizontal direction, preventing tilting or shaking caused by uneven force in the vertical direction. The limiting wheel 4-4 is installed in the embedded groove 4-3 inside the support frame 4-1 and in contact with the upper end surface of the mounting ring 3-3. When the mobile platform 3-2 moves on the ring track 3-1, the limiting wheel 4-4 will rotate with the movement of the mobile platform 3-2. The main function of the limiting wheel 4-4 is to limit the vertical displacement of the mobile platform 3-2. By using the contact constraint principle, when the mobile platform 3-2 is subjected to external force in the vertical direction (such as vibration, uneven ground, etc.), the contact between the limiting wheel 4-4 and the mounting ring 3-3 will prevent the mobile platform 3-2 from moving upward or downward, ensuring stable operation of the mobile platform 3-2 on the ring track 3-1, and also reducing the additional stress on the support column 4-2 in the vertical direction.
[0055] The support frame 4-1 is installed on the upper end surface of the driving disc 3-6, and the support column 4-2 is connected to the upper end of the support frame 4-1 and fixed with the mobile platform 3-2. The working principle is based on the support principle in mechanics. The support frame 4-1 and the support column 4-2 jointly bear the weight of the mobile platform 3-2 and the electric control cabinet 2, and transmit these gravity to the driving disc 3-6. During the movement of the mobile platform 3-2, the support column 4-2 always remains vertical, ensuring the stability of the mobile platform 3-2 when moving in the horizontal direction, preventing tilting or shaking caused by uneven force in the vertical direction. The limiting wheel 4-4 is installed in the embedded groove 4-3 inside the support frame 4-1 and in contact with the upper end surface of the mounting ring 3-3. When the mobile platform 3-2 moves on the ring track 3-1, the limiting wheel 4-4 will rotate with the movement of the mobile platform 3-2. The main function of the limiting wheel 4-4 is to limit the vertical displacement of the mobile platform 3-2. By using the contact constraint principle, when the mobile platform 3-2 is subjected to external force in the vertical direction (such as vibration, uneven ground, etc.), the contact between the limiting wheel 4-4 and the mounting ring 3-3 will prevent the mobile platform 3-2 from moving upward or downward, ensuring stable operation of the mobile platform 3-2 on the ring track 3-1, and also reducing the additional stress on the support column 4-2 in the vertical direction.
[0056] The photovoltaic panel 11 works by the principle of photoelectric effect. When sunlight shines on the photovoltaic panel 11, photons interact with the semiconductor material in the photovoltaic panel 11, making the electrons in the semiconductor material gain energy and move directionally, thereby forming an electric current inside the photovoltaic panel 11. The installation angle of the photovoltaic panel 11 is designed according to the local light conditions, generally between 30°-45°, the purpose is to make the photovoltaic panel 11 can receive the sunlight to the greatest extent, improve the photoelectric conversion efficiency, the direct current generated by the photovoltaic panel 11 is connected to the power conversion equipment (such as inverter) in the cabin through the cable, converts the direct current into alternating current, provides part of the power support for the equipment in the cabin, realizes the purpose of energy saving and environmental protection.
[0057] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present disclosure and are not limiting. Although the present disclosure has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solutions of the present disclosure can be modified or replaced equivalently without departing from the spirit and scope of the technical solutions of the present disclosure, which should be covered in the scope of the claims of the present disclosure.
Claims
1. An environmentally friendly non-metallic high-strength fiber fireproof plate prefabricated cabin, characterized in that, Include: The cabin (1), the inside of the cabin (1) is provided with electric control cabinet (2); Drive adjustment assembly (3), the drive adjustment assembly (3) is arranged at the lower end of the electric control cabinet (2); Support sliding assembly (4), the support sliding assembly (4) is arranged at the inner bottom of the cabin (1); The drive adjustment assembly (3) includes an annular track (3-1), the annular track (3-1) is arranged on the inner bottom surface of the cabin (1), the annular track (3-1) is provided with a moving platform (3-2), the electric control cabinet (2) is arranged on the moving platform (3-2), the inside of the annular track (3-1) is provided with a setting ring (3-3), the inner side wall of the setting ring (3-3) is provided with a moving wheel (3-4), the inside of the moving wheel (3-4) is provided with a drive shaft (3-5), the side wall of the drive shaft (3-5) is provided with a drive disc (3-6), the outer side wall of the drive disc (3-6) is provided with an output motor (3-7), the output end of the output motor (3-7) is fixedly connected with the drive disc (3-6), the upper end of the drive disc (3-6) is connected with the moving platform (3-2).
2. The environmentally friendly non-metallic high-strength fiber fireproof plate prefabricated cabin according to claim 1, characterized in that, The moving wheel (3-4) is in contact with the inner bottom surface of the annular track (3-1), the number of output motors (3-7) is 2, and the two output motors (3-7) are arranged on the opposite sides of the setting ring (3-3).
3. The environmentally friendly non-metallic high-strength fiber fireproof plate prefabricated cabin according to claim 1, characterized in that, The support sliding assembly (4) includes a support frame (4-1), the support frame (4-1) is arranged on the upper end surface of the drive disc (3-6), the upper end of the support frame (4-1) is provided with a support column (4-2), and the top of the support column (4-2) is fixedly connected with the moving platform (3-2).
4. The environmentally friendly non-metallic high-strength fiber fireproof plate prefabricated cabin according to claim 3, characterized in that, The inside of the support frame (4-1) is provided with an embedded groove (4-3), the embedded groove (4-3) is provided with a limiting wheel (4-4), the limiting wheel (4-4) is in contact with the upper end surface of the setting ring (3-3), and the limiting wheel (4-4) and the embedded groove (4-3) are connected through a pin shaft.
5. The environmentally friendly non-metallic high-strength fiber fireproof plate prefabricated cabin according to claim 1, characterized in that, The upper end surface of the moving platform (3-2) is provided with a positioning groove (5), the inner bottom surface of the positioning groove (5) is provided with an expansion positioning hole (6), and the expansion positioning hole (6) is located at the four corners of the bottom of the positioning groove (5).
6. The environmentally friendly non-metallic high-strength fiber fireproof plate prefabricated cabin according to claim 1, characterized in that, The number of electric control cabinets (2) is several, and multiple electric control cabinets (2) are arranged on the moving platform (3-2), and the electric control cabinet (2) is provided with an electric control buckle cover (7).
7. The environmentally friendly non-metallic high-strength fiber fireproof plate prefabricated cabin according to claim 1, characterized in that, The side wall of the cabin (1) is provided with an operation port (8), the operation port (8) is provided with an operation buckle plate (9), and the operation buckle plate (9) is connected with the edge of the operation port (8) through a pin shaft.
8. The environmentally friendly non-metallic high-strength fiber fireproof plate prefabricated cabin according to claim 1, characterized in that, The top of the cabin (1) is provided with a laying plate (10), and the upper end surface of the laying plate (10) is provided with a photovoltaic panel (11).
9. The environmentally friendly non-metallic high-strength fiber fireproof plate prefabricated cabin according to claim 1, characterized in that, The annular track (3-1) and the setting ring (3-3) are both circular structures.
10. The environmentally friendly non-metallic high-strength fiber fireproof plate prefabricated cabin according to claim 1, characterized in that, The cross section of the setting ring (3-3) is T-shaped structure, and the moving wheel (3-4) is embedded in the opposite sides of the setting ring (3-3).