A type of prefabricated wall with constant temperature and adaptive positioning

Through the autonomous positioning mechanism and the wall constant temperature control mechanism, the problems of inconvenient assembly and insufficient temperature control of prefabricated walls have been solved, realizing rapid and stable assembly and constant temperature adjustment, and improving the ease of operation and living comfort of prefabricated buildings.

CN117822767BActive Publication Date: 2026-07-17WUHU HENGCHI STEEL STRUCTURE CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
WUHU HENGCHI STEEL STRUCTURE CO LTD
Filing Date
2023-12-04
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing prefabricated wall systems require connecting adjacent walls via connectors during assembly, which is heavy, inconvenient to operate, and lacks constant temperature control.

Method used

It adopts an autonomous positioning mechanism and a wall constant temperature control mechanism, including support clips, elastic clips, support bases, metal temperature conduction rods and constant temperature branch pipes, and achieves rapid and stable assembly and constant temperature regulation through elastic locking and temperature control.

Benefits of technology

It enables rapid and stable assembly and constant temperature regulation of prefabricated walls, reduces manual operation, maintains a constant indoor temperature, and improves living comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a prefabricated wall system with constant temperature and adaptive positioning. The main structure of the prefabricated wall system is a wall frame, with adjacent sets of wall frames interconnected and assembled via wall components. A horizontal reinforcing inner plate is fixedly connected to the middle of the interior of the wall frame. Insulation blocks are fitted between the horizontal and vertical reinforcing inner plates, and insulation rock wool boards are symmetrically fitted and fixed to the front and rear sides of the insulation blocks. Prefabricated self-positioning mechanisms are installed on the inner and outer sides of the wall frame, enabling rapid and stable assembly between the wall frame and wall components. A constant temperature control mechanism is installed on the inner and outer sides of each wall component. This prefabricated wall system with constant temperature and adaptive positioning employs a novel structural design, incorporating both a self-positioning assembly structure and a constant temperature control structure, thereby improving the functionality and living comfort of the prefabricated wall system.
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Description

Technical Field

[0001] This invention relates to the field of prefabricated wall technology, specifically a temperature-controlled, self-adaptive positioning prefabricated wall. Background Technology

[0002] Prefabricated walls are suitable for rapid construction. The materials for preparing prefabricated walls can be set according to the environmental conditions of the building to be constructed. The overall structure of prefabricated walls is relatively large. Compared with the traditional brick-laying construction method, the assembly and construction speed of prefabricated walls is faster, and the disassembly and disassembly operations are also more convenient. For well-preserved prefabricated walls, they can be disassembled and reused.

[0003] A prefabricated wall structure, application number CN219909452U, includes fixed plates and hollow bricks. Both the fixed plates and hollow bricks are arranged in a rectangular array of several pieces. The hollow bricks are fixedly attached to the fixed plates, and a U-shaped groove is provided on one side of each brick where it is attached to the fixed plate. An intermediate connecting assembly is provided at the connection points of four adjacent fixed plates (top, bottom, left, and right). The intermediate connecting assembly includes four interlocking blocks and an intermediate limiting plate. The interlocking blocks are respectively located at the corners of the four fixed plates, and adjacent blocks are interlocked. The intermediate limiting plate has a threaded positioning bolt for each interlocking block, used to fix the interlocking block to a fixed position on the fixed plate. This application facilitates the horizontal and vertical splicing of the fixed plates, resulting in a more regular wall structure and increased stability and aesthetics. However, this prefabricated wall structure is assembled using horizontal and vertical connecting assemblies. The component connection method cannot quickly locate the connection positions of the prefabricated wall structure, requiring manual support and adjustment of the wall position, making the operation inconvenient.

[0004] A prefabricated wall system, application number CN212405743U, avoids the problem that the location of the pre-installed junction box in the wall module cannot meet the requirements of the actual construction site. This utility model discloses a prefabricated wall system, including a wall body composed of multiple wall modules and a wall decorative panel. Each wall module includes a profile frame and a wall panel. The wall decorative panel is hung on the outer surface of the wall panel. The multiple wall modules include a first wall module with a junction box. At least one wall panel included in the first wall module has an installation opening. The junction box has a wiring hole and a plug hole. A fixing insert is plugged into and fixed to the junction box. The junction box is embedded in the installation opening, and the fixing insert is fixedly connected to the outer surface of the wall panel. The wall decorative panel has an inlet hole and an installation hole. The opening of the junction box is located in the installation hole of the wall decorative panel. The conduit passes through the inlet hole and connects to the wiring hole within the hanging gap. This utility model is used for constructing walls; however, this prefabricated wall system does not have a constant temperature control structure, resulting in limited temperature control during construction.

[0005] In the assembly process of some existing prefabricated walls, it is necessary to connect adjacent wall structures through connecting components. The overall weight of prefabricated walls is relatively large. The assembly method of components requires manual support of the walls and constant correction of the corresponding positions of the walls. The assembly process is inconvenient. In addition, some existing prefabricated walls do not have the function of constant temperature, and the temperature control effect of the wall application is poor.

[0006] Therefore, a prefabricated wall system with constant temperature and adaptive positioning needs to be designed to address the above problems. Summary of the Invention

[0007] The purpose of this invention is to provide a temperature-controlled, adaptively positioned prefabricated wall to solve the problems mentioned in the background art, such as the need to connect adjacent wall structures through connecting components during the assembly process of some existing prefabricated walls, the large overall weight of prefabricated walls, the need for manual support of the walls during component assembly, the need for constant correction of the corresponding positions of the walls, the inconvenience of the assembly process, and the lack of temperature control function in some existing prefabricated walls, resulting in poor temperature control performance in wall applications.

[0008] To achieve the above objectives, the present invention provides the following technical solution: a prefabricated wall with constant temperature and adaptive positioning, wherein the main structure of the prefabricated wall is a wall frame, and adjacent sets of wall frames are connected and assembled with each other through wall components;

[0009] A prefabricated wall system with constant temperature and adaptive positioning, comprising:

[0010] A horizontal reinforcing inner plate is fixedly connected to the middle position inside the main wall frame, and longitudinal reinforcing inner plates are fixedly connected at equal intervals inside the main wall frame, with the horizontal and longitudinal reinforcing inner plates being vertically connected and distributed.

[0011] The insulation block is fitted between the horizontal and vertical reinforcing inner plates, and the insulation block is symmetrically fitted with insulation rock wool boards on the front and rear sides.

[0012] The main wall frame is equipped with prefabricated self-positioning mechanisms on its inner and outer sides, and the prefabricated self-positioning mechanisms can quickly control the stable assembly between the main wall frame and the wall components.

[0013] The wall components are equipped with a wall temperature control mechanism on both the inner and outer sides. The temperature values ​​on the inner and outer sides of the main wall frame can be adjusted through the wall temperature control mechanism to maintain a constant temperature effect in the indoor space built with the prefabricated wall.

[0014] Preferably, the assembled autonomous positioning mechanism includes a support clip, an elastic clip, a support base, a metal temperature conducting rod, and a positioning groove;

[0015] The support clips are symmetrically installed on the left and right sides of the main wall frame, the elastic clips are symmetrically installed on the front and rear sides of the wall components, the constant temperature branch pipe is symmetrically fixed with support seats on the upper and lower sides inside, the metal temperature conduction rod is fixedly connected to the inner sides of the main wall frame, and the main wall frame is symmetrically provided with positioning grooves on the left and right sides.

[0016] The positioning mechanism composed of these components can quickly limit the connection to adjacent wall frames, making manual operation relatively convenient during assembly.

[0017] Preferably, the wall component is elastically engaged with the main wall structure through elastic clips and support clips, and the left and right sides of the elastic clips are inclined at an angle.

[0018] The assembly position of the main frame of the adjacent wall can be quickly defined by the elastic structure.

[0019] Preferably, the side of the wall component is connected to the side of the main wall frame through a constant temperature branch pipe and a positioning groove. The constant temperature branch pipe is sleeved and installed on the outside of the metal temperature conduction rod. The support seats on the upper and lower sides inside the constant temperature branch pipe are reinforced and supported on the upper and lower ends of the metal temperature conduction rod. The support seats are in the shape of a "human".

[0020] The assembly of constant temperature branch pipes and metal temperature conduction rods can also strengthen the assembly between the main frame of the wall and the wall components, and improve the stability of the combined assembly.

[0021] Preferably, the wall constant temperature control mechanism includes a waterproof coating, a water inlet pipe, a water outlet pipe, a transmission pipe, a temperature control pipe, a constant temperature branch pipe, and an air guide groove;

[0022] The waterproof coating is applied to the inner side of the wall component, and an inlet pipe is fixedly connected to the top of the wall component, and an outlet pipe is fixedly connected to the bottom of the wall component. The transmission pipe is connected between the inlet pipe and the outlet pipe, and a temperature control pipe is connected through the outer side of the transmission pipe. The constant temperature branch pipe is fixedly connected to the side of the wall component, and air guide grooves are symmetrically opened on the front and rear sides of the constant temperature branch pipe.

[0023] This component forms the wall's constant temperature control structure. By controlling the temperature of the incoming and outgoing water, the temperature of the wall can be adjusted, thereby regulating the indoor temperature of the prefabricated building.

[0024] Preferably, the temperature control pipes are arranged at equal intervals inside the wall assembly, and the temperature control pipes and the constant temperature branch pipes are distributed on the left and right sides respectively; the temperature of the flowing water in the temperature control pipes is transferred to the constant temperature branch pipes on the side, and the temperature inside the main wall frame is adjusted by the constant temperature branch pipes to reduce the mutual interference between indoor and outdoor temperatures.

[0025] Preferably, the thermostatic branch pipe is interconnected with the interior of the insulation block through the air guide groove, and the inner diameter of the thermostatic branch pipe is larger than the outer diameter of the metal temperature conduction rod; the thermostatic branch pipe transmits temperature to the insulation block and regulates the temperature inside the insulation block.

[0026] Preferably, an anti-vibration mechanism is assembled between two adjacent sets of temperature control tubes, and the anti-vibration mechanism consists of a rectangular frame, a guide bracket, a shock-absorbing seat, an elastic sheet, and a metal spring;

[0027] The rectangular frame is fixedly installed on the inner side of the wall component, and a guide bracket is fixedly connected to the inner side wall of the rectangular frame. The shock absorber is symmetrically connected to the upper and lower ends of the guide bracket, and an elastic sheet is connected to the side of the shock absorber. A metal spring is connected between the upper and lower sets of elastic sheets.

[0028] This part of the components forms a support and reinforcement structure for the temperature control pipe. The flowing water inside the temperature control pipe will cause a certain vibration to the pipe wall. The vibration force can be buffered by the shock-absorbing support structure to maintain the stability of the internal structure of the wall.

[0029] Preferably, the shock absorber and the guide bracket form an up-and-down sliding structure, and the elastic sheet below the shock absorber is slidably connected to the rectangular frame through it. The upper and lower shock absorbers are connected by an elastic sheet and a metal spring to form an elastic connection structure. The elastic connection structure can buffer the vibration force generated by the temperature control tube.

[0030] Preferably, the thermal insulation rock wool board is composed of folded metal parts and thermal insulation filler. The folded metal parts are fitted into the middle of the interior of the thermal insulation rock wool board, and the thermal insulation filler is filled inside the thermal insulation rock wool board and on the outer side of the folded metal parts. The thermal insulation structure composed of this part has good thermal insulation effect and strong support and impact resistance of the components.

[0031] Compared with the prior art, the beneficial effects of the present invention are: the prefabricated wall with constant temperature adaptive positioning adopts a novel structural design, which enables the prefabricated wall to be equipped with an autonomous positioning mechanism and a wall constant temperature control mechanism, the specific details of which are as follows:

[0032] 1. This thermostatic adaptive positioning prefabricated wall is equipped with an autonomous positioning mechanism. When two adjacent sets of wall main frames are assembled, the wall components are snapped between the two sets of wall main frames. The wall components are quickly snapped and limited between the two sets of wall main frames by elastic clips and support clips. The thermostatic branch pipe on the side of the wall component is inserted through the inside of the wall main frame. The thermostatic branch pipe is sleeved on the outside of the metal temperature conduction rod and is reinforced by the internal support seat. This part of the structure can further strengthen the assembly between the wall main frames and maintain the stability of the assembly between the prefabricated walls. Moreover, this snap-fit ​​assembly method only requires manual pushing of the wall assembly and does not require reinforcement of other connecting components, so the amount of manual operation is small.

[0033] 2. This thermostatic self-adaptive prefabricated wall is equipped with a wall thermostatic control mechanism. Water at a certain temperature is controlled to flow into the temperature control pipe through inlet and outlet water pipes. The temperature of the flowing water in the temperature control pipe is transferred to the interior of the wall components, and the temperature is also transferred to the insulation blocks in the main frame of the wall through thermostatic branch pipes. The insulation blocks can retain the internal temperature transfer loss, change the internal temperature of the prefabricated wall, reduce the mutual temperature interference between the inside and outside of the prefabricated wall, so that the internal temperature of the prefabricated building can be maintained at a certain constant temperature, improving the comfort of living. Attached Figure Description

[0034] Figure 1 This is a schematic diagram of the main frame assembly structure of the wall of the present invention;

[0035] Figure 2 This is a schematic diagram of the wall frame and wall component assembly structure of the present invention;

[0036] Figure 3 This is a top view of the main wall frame structure of the present invention;

[0037] Figure 4 This is a front view schematic diagram of the constant temperature branch pipe structure of the present invention;

[0038] Figure 5 This is a schematic diagram of the elevation structure of the temperature control tube of the present invention;

[0039] Figure 6 This is a schematic diagram of the composition of the shock-absorbing mechanism of the present invention;

[0040] Figure 7 This is a schematic diagram of the elevation structure of the insulation block of the present invention;

[0041] Figure 8 This is a top view of the wall component of the present invention;

[0042] Figure 9 This is a schematic diagram of the elevation structure of the metal temperature conduction rod of the present invention;

[0043] Figure 10This is a side view of the support structure of the present invention;

[0044] Figure 11 This is a schematic diagram of the elevation structure of the folding metal component of the present invention.

[0045] In the diagram: 1. Main wall frame; 2. Horizontal reinforcing inner panel; 3. Vertical reinforcing inner panel; 4. Insulation block; 5. Insulation rock wool board; 51. Folded metal parts; 52. Insulation filler; 6. Support clips; 7. Wall components; 8. Elastic clips; 9. Waterproof coating; 10. Water inlet pipe; 11. Water outlet pipe; 12. Transmission pipe; 13. Temperature control pipe; 14. Constant temperature branch pipe; 15. Air guide groove; 16. Support base; 17. Metal temperature conduction rod; 18. Positioning groove; 19. Anti-vibration mechanism; 191. Rectangular frame; 192. Guide bracket; 193. Vibration damping base; 194. Elastic sheet; 195. Metal spring. Detailed Implementation

[0046] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0047] Please see Figures 1-11 The present invention provides a technical solution: a prefabricated wall with constant temperature and adaptive positioning, wherein the main structure of the prefabricated wall is a wall frame 1, and two adjacent sets of wall frames 1 are connected and assembled with each other through wall components 7.

[0048] A prefabricated wall system with constant temperature and adaptive positioning, comprising:

[0049] A horizontal reinforcing inner plate 2 is fixedly connected to the middle position inside the main wall frame 1, and a longitudinal reinforcing inner plate 3 is fixedly connected to the main wall frame 1 at equal intervals inside, and the horizontal reinforcing inner plate 2 and the longitudinal reinforcing inner plate 3 are vertically connected and distributed.

[0050] A thermal insulation block 4 is fitted between the horizontal reinforcing inner plate 2 and the longitudinal reinforcing inner plate 3, and thermal insulation rock wool boards 5 are symmetrically fitted and fixed inside the front and rear sides of the thermal insulation block 4.

[0051] The main wall frame 1 is equipped with a prefabricated self-positioning mechanism on its inner and outer sides, and the prefabricated self-positioning mechanism can quickly control the stable assembly between the main wall frame 1 and the wall components 7.

[0052] The wall component 7 is equipped with a wall temperature control mechanism on its inner and outer sides. The temperature values ​​of the inner and outer sides of the main wall frame 1 can be adjusted through the wall temperature control mechanism to maintain the constant temperature effect of the indoor space built with the prefabricated wall.

[0053] In this example, the prefabricated self-positioning mechanism includes a support clip 6, an elastic clip 8, a support base 16, a metal temperature conduction rod 17, and a positioning groove 18. The support clip 6 is symmetrically installed on the left and right sides of the main wall frame 1, the elastic clip 8 is symmetrically installed on the front and rear sides of the wall component 7, the support base 16 is symmetrically fixed on the upper and lower sides inside the constant temperature branch pipe 14, the metal temperature conduction rod 17 is fixedly connected to the inner sides of the main wall frame 1, and the positioning groove 18 is symmetrically opened on the left and right sides of the main wall frame 1. The wall component 7 forms an elastic engagement structure with the main wall frame 1 through the elastic clip 8 and the support clip 6, and the left and right sides of the elastic clip 8 are inclined at an angle; the side of the wall component 7 is connected to the side of the main wall frame 1 through the constant temperature branch pipe 14 and the positioning groove 18, and the constant temperature branch pipe 14 is sleeved and installed on the outside of the metal temperature conduction rod 17, and the support seats 16 on the upper and lower sides of the constant temperature branch pipe 14 are reinforced and supported on the upper and lower ends of the metal temperature conduction rod 17, and the support seats 16 are in the shape of a "human".

[0054] When controlling the assembly of two adjacent sets of wall main frames 1, the wall component 7 is positioned between the left and right sets of wall main frames 1. The elastic clips 8 on the front and rear sides of the wall component 7 are elastically pressed against the side of the support clip 6 through elastic deformation, thus initially limiting the two adjacent sets of wall main frames 1.

[0055] The thermostatic branch pipe 14 on the side of the wall component 7 is inserted into the interior of the main wall frame 1 through the positioning groove 18. The thermostatic branch pipe 14 is correspondingly sleeved on the outside of the metal temperature conduction rod 17. The support seats 16 on the upper and lower sides of the thermostatic branch pipe 14 are pressed and supported on the upper and lower sides of the metal temperature conduction rod 17, which makes the assembly stability between the metal temperature conduction rod 17 and the thermostatic branch pipe 14 more stable. This part of the structure can further strengthen the assembly stability of the two adjacent sets of main wall frames 1 and wall components 7. This snap-fit ​​assembly structure only requires the staff to support the wall structure and push it horizontally to snap it in place. The operation is very convenient. The walls can adapt to the positioning on their own through the snap-fit ​​structure. There is no need to adjust and correct the assembly position between the walls, which reduces the amount of manual assembly work.

[0056] The wall temperature control mechanism includes a waterproof coating 9, an inlet pipe 10, an outlet pipe 11, a transmission pipe 12, a temperature control pipe 13, a temperature control branch pipe 14, and a venting groove 15. The waterproof coating 9 is applied to the inner side of the wall assembly 7, and the inlet pipe 10 is fixedly connected to the top of the wall assembly 7, while the outlet pipe 11 is fixedly connected to the bottom of the wall assembly 7. The transmission pipe 12 connects between the inlet pipe 10 and the outlet pipe 11, and the temperature control pipe 13 is connected through the outer side of the transmission pipe 12. The temperature control branch pipe 14 is fixedly connected to... Air guide grooves 15 are symmetrically provided on the sides of the wall component 7 and on the front and rear sides of the constant temperature branch pipe 14; temperature control pipes 13 are arranged at equal intervals inside the wall component 7, and the temperature control pipes 13 and the constant temperature branch pipes 14 are distributed correspondingly on the left and right sides; the constant temperature branch pipes 14 are interconnected with the interior of the insulation block 4 through the air guide grooves 15, and the internal diameter of the constant temperature branch pipes 14 is larger than the external diameter of the metal temperature conduction rod 17; an anti-vibration mechanism 19 is installed between two adjacent sets of temperature control pipes 13, and the anti-vibration mechanism 19 consists of a rectangular frame 191. The wall assembly 7 is composed of a guide bracket 192, a shock absorber 193, an elastic sheet 194, and a metal spring 195. A rectangular frame 191 is fixedly installed on the inner side of the wall assembly 7, and the guide bracket 192 is fixedly connected to the inner side wall of the rectangular frame 191. The shock absorber 193 is symmetrically connected to the upper and lower ends of the guide bracket 192, and the side of the shock absorber 193 is connected to an elastic sheet 194. A metal spring 195 is connected between the upper and lower sets of elastic sheets 194. The shock absorber 193 and the guide bracket 192 slide vertically. The structure includes an elastic sheet 194 below the shock absorber 193 that is slidably connected to the rectangular frame 191, and an elastic connection structure is formed between the upper and lower shock absorbers 193 through the elastic sheet 194 and the metal spring 195; the thermal insulation rock wool board 5 is composed of a folded metal part 51 and a thermal insulation filler 52. The folded metal part 51 is fitted into the middle of the interior of the thermal insulation rock wool board 5, and the thermal insulation filler 52 is filled inside the thermal insulation rock wool board 5 and also fills the outer side of the folded metal part 51.

[0057] After the main frame 1 of the control wall is assembled with the wall component 7, the inlet pipe 10 and the outlet pipe 11 are connected to the water supply pipe and drainage pipe in the building respectively. The temperature inside the prefabricated wall is adjusted according to the seasonal changes and the different indoor temperatures of the building.

[0058] Water flow is controlled by the inlet pipe 10 to enter the transmission pipe 12. The transmission pipe 12 controls the water flow from top to bottom into the temperature control pipe 13. The temperature control pipe 13 and the constant temperature branch pipe 14 are distributed correspondingly on the left and right sides. The temperature of the water in the temperature control pipe 13 is first transferred to the interior of the wall assembly 7 (the waterproof coating 9 on the inside of the wall assembly 7 can prevent condensation caused by internal temperature changes from affecting the wall). The side of the constant temperature branch pipe 14 is connected to the interior of the wall assembly 7, and the temperature in the wall assembly 7 is transferred to the constant temperature branch pipe 14. The constant temperature branch pipe 14 then transfers the temperature to the interior through the air guide groove 15. External heat transfer (the metal temperature conduction rod 17 passing through the constant temperature branch pipe 14 can also play a role in conducting temperature, so that the temperature is more evenly distributed in the constant temperature branch pipe 14). The constant temperature branch pipe 14 transfers the temperature to the interior of the insulation block 4. The insulation rock wool board 5 embedded in the insulation block 4 can improve the insulation effect inside the wall, so that the transferred temperature is evenly distributed in the wall with less loss, reducing the mutual interference between the indoor and outdoor temperatures of the prefabricated building, thereby maintaining a relatively constant indoor temperature effect in the prefabricated building and improving the comfort of living in the prefabricated building.

[0059] Although embodiments of the invention have been shown and described, 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 invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A prefabricated wall with constant temperature adaptive positioning, wherein the main structure of the prefabricated wall is a wall frame (1), and two adjacent sets of wall frames (1) are connected and assembled with each other through wall components (7); Its features are, include: The wall main frame (1) is fixedly connected to a horizontal reinforcing inner plate (2) at the middle position inside, and the wall main frame (1) is fixedly connected to a longitudinal reinforcing inner plate (3) at equal intervals inside, and the horizontal reinforcing inner plate (2) and the longitudinal reinforcing inner plate (3) are vertically connected and distributed. The insulation block (4) is fitted between the horizontal reinforcing inner plate (2) and the vertical reinforcing inner plate (3), and the insulation block (4) is symmetrically fitted with insulation rock wool board (5) on the front and rear sides inside. The main wall frame (1) is equipped with an assembly-type self-positioning mechanism on its inner and outer sides, and the assembly-type self-positioning mechanism can quickly control the stable assembly between the main wall frame (1) and the wall components (7). The wall component (7) is equipped with a wall constant temperature control mechanism on its inner and outer sides. The temperature values ​​of the inner and outer sides of the wall main frame (1) can be adjusted through the wall constant temperature control mechanism to maintain the constant temperature effect of the indoor space built by the prefabricated wall. The wall constant temperature control mechanism includes a waterproof coating (9), an inlet pipe (10), an outlet pipe (11), a transmission pipe (12), a temperature control pipe (13), a constant temperature branch pipe (14), and an air guide groove (15). The waterproof coating (9) is applied to the inner side of the wall assembly (7), and an inlet pipe (10) is fixedly connected to the top of the wall assembly (7), and an outlet pipe (11) is fixedly connected to the bottom of the wall assembly (7). The transmission pipe (12) is connected between the inlet pipe (10) and the outlet pipe (11), and a temperature control pipe (13) is connected through the outer side of the transmission pipe (12). The constant temperature branch pipe (14) is fixedly connected to the side of the wall assembly (7), and air guide grooves (15) are symmetrically opened on the front and rear sides of the constant temperature branch pipe (14).

2. The prefabricated wall system with constant temperature adaptive positioning according to claim 1, characterized in that: The assembled autonomous positioning mechanism includes a support clip (6), an elastic clip (8), a support base (16), a metal temperature conduction rod (17), and a positioning groove (18). The support clips (6) are symmetrically installed on the left and right sides of the main wall frame (1), the elastic clips (8) are symmetrically installed on the front and rear sides of the wall assembly (7), the constant temperature branch pipe (14) is symmetrically fixed with support seats (16) on the upper and lower sides inside, the metal temperature conduction rod (17) is fixedly connected to the inner sides of the main wall frame (1), and the main wall frame (1) is symmetrically provided with positioning grooves (18) on the left and right sides.

3. A prefabricated wall system with constant temperature adaptive positioning according to claim 2, characterized in that: The wall component (7) forms an elastic engagement structure with the main wall frame (1) through the elastic clip (8) and the support clip (6), and the left and right sides of the elastic clip (8) are inclined at an angle.

4. A prefabricated wall system with constant temperature adaptive positioning according to claim 2, characterized in that: The wall component (7) is connected to the side of the wall main frame (1) through a constant temperature branch pipe (14) and a positioning groove (18). The constant temperature branch pipe (14) is sleeved and installed on the outside of the metal temperature conduction rod (17). The support seats (16) on the upper and lower sides of the constant temperature branch pipe (14) are reinforced and supported on the upper and lower ends of the metal temperature conduction rod (17). The support seats (16) are in the shape of a "human".

5. A prefabricated wall system with constant temperature adaptive positioning according to claim 1, characterized in that: The temperature control pipes (13) are arranged at equal intervals inside the wall assembly (7), and the temperature control pipes (13) and the constant temperature branch pipes (14) are distributed on the left and right sides respectively.

6. A prefabricated wall system with constant temperature adaptive positioning according to claim 5, characterized in that: The constant temperature branch pipe (14) is connected to the interior of the heat insulation block (4) through the air guide groove (15), and the internal diameter of the constant temperature branch pipe (14) is larger than the external diameter of the metal temperature conduction rod (17).

7. A prefabricated wall system with constant temperature adaptive positioning according to claim 6, characterized in that: An anti-vibration mechanism (19) is assembled between two adjacent sets of temperature control tubes (13), and the anti-vibration mechanism (19) is composed of a rectangular frame (191), a guide bracket (192), a shock-absorbing seat (193), an elastic sheet (194) and a metal spring (195); The rectangular frame (191) is fixedly installed on the inner side of the wall assembly (7), and the inner side wall of the rectangular frame (191) is fixedly connected to the guide bracket (192). The shock absorber (193) is symmetrically connected to the upper and lower ends of the guide bracket (192), and the side of the shock absorber (193) is connected to the elastic sheet (194), and a metal spring (195) is connected between the upper and lower sets of elastic sheets (194).

8. A prefabricated wall system with constant temperature adaptive positioning according to claim 7, characterized in that: The shock absorber (193) and the guide bracket (192) form an up-and-down sliding structure, and the elastic sheet (194) under the shock absorber (193) and the rectangular frame (191) are slidably connected through each other, and the upper and lower shock absorbers (193) are connected by the elastic sheet (194) and the metal spring (195).

9. A prefabricated wall system with constant temperature adaptive positioning according to claim 1, characterized in that: The thermal insulation rock wool board (5) is composed of a folded metal part (51) and a thermal insulation filler (52). The folded metal part (51) is fitted into the middle of the interior of the thermal insulation rock wool board (5). The thermal insulation filler (52) is filled inside the thermal insulation rock wool board (5) and is also filled on the outer side of the folded metal part (51).