Prefabricated intelligent electric partition system

CN224634156UActive Publication Date: 2026-08-14SUZHOU KEYIDI PREFABRICATED CONSTR CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-05
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

[0004]有鉴于此,本实用新型提供了一种装配式智能电动隔墙系统,以解决现有的移动式隔墙的墙体都设计的较轻和较薄,导致墙体的保温和隔音效果都较差的问题

Benefits of technology

[0009]有益效果:通过设置在楼板和地板之间的连接组件与墙体结构滑动连接,使得墙体结构能够在楼板和地板之间移动,再通过将墙体结构设置为相对间隔设置的两个墙板,使得两个墙板之间具有间隙,从而使得第一支撑件能够设置在该间隔内,并对两个墙板进行支撑,同时,两个墙板之间还可以设置保温件,且第一支撑件上能够设置隔音件,从而通过保温件和隔音件来提高墙体结构的保温性能和隔音性能,进而有利于提高隔墙系统的实用性。

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Abstract

This utility model relates to the field of partition wall technology and discloses a prefabricated intelligent electric partition wall system, including a connecting structure and a wall structure. The connecting structure includes a connecting component and a limiting component. One end of the connecting component is connected to the floor slab, and the limiting component is disposed on the floor. The connecting component and the limiting component are correspondingly arranged. The wall structure includes at least two wall panels and several first support components. The two wall panels are arranged opposite each other at intervals. All the first support components are disposed between the two wall panels. At least two first support components are disposed on opposite sides of the two wall panels, and one first support component is slidably connected to the connecting component, and the other first support component is slidably connected to the limiting component. The wall structure also includes a thermal insulation component and a sound insulation component. The thermal insulation component is disposed between the two wall panels and connected to the first support components, and the sound insulation component is disposed on the first support components. This utility model improves the thermal insulation and sound insulation performance of the wall structure through the thermal insulation component and the sound insulation component, thereby improving the practicality of the partition wall system.
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Description

Technical Field

[0001] This utility model relates to the field of partition wall technology, specifically to a prefabricated intelligent electric partition wall system. Background Technology

[0002] Partition walls are walls that separate interior spaces within a building. They are non-load-bearing and generally require to be lightweight, thin, and have good sound insulation properties. Different functional rooms have different requirements for partition walls; for example, kitchen partition walls should be fire-resistant, while bathroom partition walls should be moisture-proof. Additionally, partition walls should be as easy to assemble and disassemble as possible.

[0003] In existing technology, partition walls are generally divided into fixed partition walls and movable partition walls. Fixed partition walls cannot be moved; they are fixedly connected to the floor during construction and serve to plan and divide the space within a room. Movable partition walls, on the other hand, can be moved. During construction, they are slidably connected to the floor slab through a connecting structure, allowing them to move relative to the floor slab under external forces, thereby improving the space utilization rate within the room. However, because movable partition walls can move relative to the floor slab under external forces, their walls are usually designed to be lighter and thinner to reduce the output of external forces, resulting in poorer thermal insulation and sound insulation performance. Utility Model Content

[0004] In view of this, the present invention provides a prefabricated intelligent electric partition system to solve the problem that the existing movable partitions are designed to be relatively light and thin, resulting in poor heat insulation and sound insulation effects.

[0005] In a first aspect, this utility model provides a prefabricated intelligent electric partition system, comprising:

[0006] A connection structure includes a connection component and a limiting member, one end of the connection component is connected to the floor slab, the limiting member is disposed on the floor, and the connection component and the limiting member are correspondingly disposed;

[0007] The wall structure includes at least two wall panels and a plurality of first support members. The two wall panels are arranged at intervals relative to each other. All the first support members are arranged between the two wall panels. At least two first support members are arranged on opposite sides of the two wall panels. One of the first support members is slidably connected to the connecting assembly, and the other first support member is slidably connected to the limiting member.

[0008] The wall structure also includes a thermal insulation component and a sound insulation component. The thermal insulation component is disposed between the two wall panels and connected to the first support component, and the sound insulation component is disposed on the first support component.

[0009] Beneficial effects: By slidingly connecting the wall structure with the connecting components set between the floor slab and the floor, the wall structure can move between the floor slab and the floor. Furthermore, by setting the wall structure as two wall panels that are relatively spaced apart, a gap is created between the two wall panels, allowing the first support member to be set within this gap and support the two wall panels. At the same time, thermal insulation components can be set between the two wall panels, and sound insulation components can be set on the first support member. Thus, the thermal insulation and sound insulation performance of the wall structure is improved through the thermal insulation and sound insulation components, thereby enhancing the practicality of the partition wall system.

[0010] In one optional embodiment, the wall structure further includes a plurality of second support members, all of which are disposed between two wall panels, and at least two of the second support members are disposed on the other opposite sides of the two wall panels; the second support members are perpendicular to the first support members.

[0011] Beneficial effects: By including several second support members in the wall structure, all the second support members are set between the two wall panels, and two of the second support members are set on the opposite sides of the two wall panels. In this way, the gap between the two wall panels can be sealed by the first support members and the second support members set on the periphery of the two wall panels respectively. In addition, the second support members are set perpendicular to the first support members, so that all the first support members and the second support members together form a frame structure. When the two wall panels are connected to all the first support members and all the second support members, the first support members and the second support members can provide strong support for the two wall panels.

[0012] In one optional embodiment, the side of the insulation component is connected to the first support component and the second support component, respectively.

[0013] Beneficial effect: By setting the sides of the insulation component to be connected to the first support and the second support respectively, when the insulation component is placed in the gap between the two wall panels, the first support and the second support can fix the insulation component between the two wall panels, preventing the insulation component from shifting and causing noise.

[0014] In one alternative embodiment, the first support member has a first receiving cavity adapted to receive the sound insulation member; the second support member has a second receiving cavity adapted to receive the sound insulation member.

[0015] Beneficial effects: By providing a first receiving cavity for the first support member and a second receiving cavity for the second support member, the sound insulation member can be accommodated in both the first and second receiving cavities. In this way, the sound insulation member can be fixed on the first and second support members and provide sound insulation.

[0016] In one alternative embodiment, the wall structure further includes an adhesive component disposed between the wall panel and the insulation component.

[0017] Beneficial effects: By setting the wall structure, an adhesive component is also included. In this embodiment, the adhesive component is polyurethane adhesive. The adapter is specifically set between the wall panel and the insulation component, so that the insulation component and the wall panel can be bonded together, thereby further improving the fixing effect of the insulation component.

[0018] In one optional embodiment, the connecting assembly includes a hanging rail, an adapter, and a drive unit. The hanging rail is disposed on the floor slab and has a mounting cavity with a partially open side. The drive unit is disposed within the mounting cavity, and the drive end of the drive unit extends out of the mounting cavity through the opening and is slidably connected to one end of the adapter. The other end of the adapter is connected to a first support member.

[0019] Beneficial effects: By setting the connecting components including a hanging rail, an adapter, and a drive unit, the hanging rail and the adapter in this embodiment are respectively a hanging rail and a sealing profile. The hanging rail is set on the floor slab and has an installation cavity with a partially open side. The drive unit is set in the installation cavity, and the drive end of the drive unit can extend out of the installation cavity through the opening and slide to one end of the adapter. The other end of the adapter is connected to the first support member. In this way, the adapter can be driven to move by the drive unit, and the wall structure can be moved synchronously by the adapter.

[0020] In one optional embodiment, the adapter is provided with a sliding portion, and the driving end of the driving unit is rotatably disposed within the sliding portion. When the driving end of the driving unit rotates, the driving end of the driving unit is adapted to drive the adapter to move relative to the hanging rail through the sliding portion.

[0021] Beneficial effects: By providing a sliding part on the adapter, which in this embodiment is a sliding groove, the driving end of the driving unit is rotatably disposed on the sliding part, and the driving end of the driving unit abuts against the inner wall of the sliding part, so that when the driving end of the driving unit rotates, the driving end of the driving unit can drive the adapter to move through the friction between it and the inner wall of the sliding part.

[0022] In one optional embodiment, the driving unit includes a driving member and a first rotating member. The driving member is disposed within the mounting cavity, and the first rotating member is rotatably disposed within the sliding portion. The driving end of the driving member is connected to the first rotating member through the opening.

[0023] Beneficial effects: By setting the drive unit to include a drive component and a first rotating component, in this embodiment the drive component and the first rotating component are respectively a drive motor and a first rotating wheel. The drive component is disposed in the mounting cavity, and the first rotating component is rotatably disposed in the sliding part. The peripheral side wall of the first rotating component abuts against the inner side wall of the sliding part. At the same time, the drive end of the drive component is connected to the first rotating component through an opening, so that when the drive end of the drive component drives the first rotating component to rotate, the adapter can move.

[0024] In one optional embodiment, the second support member has two accommodating cavities disposed opposite to each other; the connecting structure further includes at least two second rotating members, each of which is disposed within one of the accommodating cavities and is tactilely connected to the limiting member.

[0025] Beneficial effects: By setting the second support member to have two relatively arranged cavities and setting the connecting structure to include two second rotating members, which are second rotating wheels in this embodiment, each second rotating member is set in a cavity and each second rotating member is rolledly connected to the limiting member. When the wall structure moves, the second rotating member can rotate relative to the limiting member to change the sliding friction between the second support member and the limiting member into rolling friction, which is beneficial to improving the service life of the second support member and the limiting member.

[0026] In one optional embodiment, the device further includes an edge sealing structure, which includes at least two first edge sealing members and at least two second edge sealing members, wherein the two first edge sealing members are respectively disposed on both sides of the adapter and the two second edge sealing members are respectively disposed on both sides of the limiting member.

[0027] Beneficial effects: By setting the edge sealing structure on both sides of the wall structure, the edge sealing structure specifically includes two first edge sealing pieces and two second edge sealing pieces. In this embodiment, the first edge sealing pieces and the second edge sealing pieces are respectively a decorative cover plate and a skirting board. The two first edge sealing pieces are respectively set on both sides of the transition piece, thereby covering the transition piece. The two second edge sealing pieces are respectively set on both sides of the limiting piece, thereby covering the limiting piece. In this way, it is beneficial to improve the external aesthetics of the partition wall system. Attached Figure Description

[0028] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0029] Figure 1This is a structural schematic diagram of a prefabricated intelligent electric partition wall system according to an embodiment of the present utility model;

[0030] Figure 2 This is a schematic cross-sectional view of the upper closing node of a prefabricated intelligent electric partition wall system according to an embodiment of the present utility model;

[0031] Figure 3 This is a schematic cross-sectional view of the lower closing node of a prefabricated intelligent electric partition wall system according to an embodiment of the present utility model;

[0032] Figure 4 This is a cross-sectional view of a prefabricated intelligent electric partition wall system according to an embodiment of the present utility model.

[0033] Figure 5 This is a schematic diagram of the first structure of the first support member of a prefabricated intelligent electric partition system according to an embodiment of the present utility model;

[0034] Figure 6 This is a schematic diagram of the second structure of the first support member of a prefabricated intelligent electric partition system according to an embodiment of the present utility model;

[0035] Figure 7 This is a structural schematic diagram of a sound insulation component of a prefabricated intelligent electric partition wall system according to an embodiment of this utility model;

[0036] Figure 8 This is a structural schematic diagram of the hanging rail component of a prefabricated intelligent electric partition system according to an embodiment of the present utility model;

[0037] Figure 9 This is a structural schematic diagram of the first edge sealing component of a prefabricated intelligent electric partition wall system according to an embodiment of the present utility model;

[0038] Figure 10 This is a schematic diagram of the structure of a connector for a prefabricated intelligent electric partition system according to an embodiment of the present utility model.

[0039] Explanation of reference numerals in the attached figures:

[0040] 2-Floor; 3-Connecting structure; 31-Connecting component; 311-Hanging rail; 312-Adapter; 313-Drive unit; 3131-Drive component; 3132-First rotating component; 32-Limiting component; 33-Second rotating component; 4-Wall structure; 41-Wall panel; 42-First support component; 43-Second support component; 44-Insulation component; 45-Sound insulation component; 46-Adhesive component; 51-First edge sealing component; 52-Second edge sealing component. Detailed Implementation

[0041] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0042] The following is combined with Figures 1 to 10 The following describes embodiments of the present invention.

[0043] According to embodiments of this utility model, in one aspect, a prefabricated intelligent electric partition system is provided, such as... Figures 1 to 10 As shown, the structure includes a connecting structure 3 and a wall structure 4. The connecting structure 3 includes a connecting component 31 and a limiting component 32. One end of the connecting component 31 is connected to the floor slab, and the limiting component 32 is disposed on the floor 2. The connecting component 31 and the limiting component 32 are correspondingly disposed. The wall structure 4 includes at least two wall panels 41 and several first support components 42. The two wall panels 41 are arranged at intervals relative to each other. All the first support components 42 are disposed between the two wall panels 41. At least two first support components 42 are disposed on opposite sides of the two wall panels 41, and one of the first support components 42 is slidably connected to the connecting component 31, and the other first support component 42 is slidably connected to the limiting component 32. The wall structure 4 also includes a thermal insulation component 44 and a sound insulation component 45. The thermal insulation component 44 is disposed between the two wall panels 41 and connected to the first support component 42, and the sound insulation component 45 is disposed on the first support component 42.

[0044] The prefabricated intelligent electric partition system described above utilizes a connection structure 3 and a wall structure 4 located between the floor slab and the floor 2. The connection structure 3 includes a connection component 31 and a limiting member 32. One end of the connection component 31 is connected to the floor slab, while the limiting member 32 is located on the floor 2. The connection component 31 and the limiting member 32 are correspondingly positioned. The wall structure 4 includes two wall panels 41 and several first support members 42. The two wall panels 41 are spaced apart from each other, and all the first support members 42 are located between the two wall panels 41. Among all the first support members 42, two are located on opposite sides of the two wall panels 41. One of these first support members 42 is slidably connected to the other end of the connection component 31, while the other first support member 42 is slidably connected to the limiting member 32. Thus, under the action of external force, the wall structure 4 can move between the floor slab and the floor 2 via the connection component 31 and the limiting member 32.

[0045] In addition, the wall structure 4 also includes a thermal insulation component 44 and a sound insulation component 45. In this embodiment, the thermal insulation component 44 and the sound insulation component 45 are thermal insulation rock wool and sound insulation pad block, respectively. The thermal insulation component 44 is disposed between the two wall panels 41 and is connected to all the first support members 42. In this way, the thermal insulation component 44 can be fixed between the two wall panels 41 and can provide thermal insulation for the space enclosed by the wall structure 4. The sound insulation component 45 is specifically disposed on the first support member 42, thereby preventing sound from being transmitted to the space enclosed by the wall structure 4 through the first support member 42.

[0046] Specifically, the sound insulation component 45 can also be installed on the back of the two wall panels 41 that are close to each other. In this way, when the insulation component 44 is installed between the two wall panels 41, the sound insulation component 45 can also play a sound insulation role.

[0047] In summary, by slidingly connecting the connecting component 31 between the floor slab and the floor 2 to the wall structure 4, the wall structure 4 can move between the floor slab and the floor 2. Furthermore, by setting the wall structure 4 as two wall panels 41 spaced apart, a gap is created between the two wall panels 41, allowing the first support member 42 to be placed within this gap and support the two wall panels 41. Simultaneously, a thermal insulation component 44 can be installed between the two wall panels 41, and a sound insulation component 45 can be installed on the first support member 42. Thus, the thermal insulation and sound insulation performance of the wall structure 4 are improved through the thermal insulation component 44 and the sound insulation component 45, thereby enhancing the practicality of the partition wall system.

[0048] It should be noted that, due to the different structures of the connecting component 31 and the limiting member 32, the structures of the first support member 42, which is connected to the connecting component 31 and the limiting member 32 respectively, are also different. Figure 6 As shown, the structure of the first support member 42 is adapted to the structure of the connecting assembly 31, as follows: Figure 5 As shown, the structure of the first support member 42 is adapted to the structure of the limiting member 32.

[0049] In one embodiment, such as Figure 4 As shown, the wall structure 4 also includes several second support members 43. All the second support members 43 are arranged between the two wall panels 41, and at least two second support members 43 are arranged on the other opposite sides of the two wall panels 41. The second support members 43 are arranged vertically with the first support members 42.

[0050] The prefabricated intelligent electric partition system described above includes several second support members 43 in addition to the wall structure 4. All the second support members 43 are located between two wall panels 41, and two of the second support members 43 are located on the opposite sides of the two wall panels 41. In this way, the gap between the two wall panels 41 can be sealed by the first support members 42 and the second support members 43 respectively located on the periphery of the two wall panels 41. In addition, the second support members 43 are perpendicular to the first support members 42. Thus, all the first support members 42 and the second support members 43 together form a frame structure. When the two wall panels 41 are connected to all the first support members 42 and all the second support members 43, the first support members 42 and the second support members 43 can provide strong support for the two wall panels 41.

[0051] In one embodiment, such as Figures 2 to 4 As shown, the sides of the insulation component 44 are connected to the first support component 42 and the second support component 43, respectively.

[0052] The prefabricated intelligent electric partition system described above connects the side of the insulation component 44 to the first support component 42 and the second support component 43 respectively. In this way, when the insulation component 44 is placed in the gap between the two wall panels 41, the first support component 42 and the second support component 43 can fix the insulation component 44 between the two wall panels 41, thus preventing the insulation component 44 from shifting and generating noise.

[0053] In one embodiment, such as Figures 2 to 4 As shown, the first support member 42 has a first receiving cavity, which is suitable for accommodating the sound insulation member 45; the second support member 43 has a second receiving cavity, which is suitable for accommodating the sound insulation member 45.

[0054] The prefabricated intelligent electric partition system described above, by setting a first support member 42 with a first receiving cavity and setting a second support member 43 with a second receiving cavity, can accommodate a sound insulation member 45 in both the first and second receiving cavities. In this way, the sound insulation member 45 can be fixed on the first support member 42 and the second support member 43 and provide sound insulation.

[0055] In one embodiment, such as Figure 2 As shown, the wall structure 4 also includes an adhesive component 46, which is disposed between the wall panel 41 and the insulation component 44.

[0056] The prefabricated intelligent electric partition system described above also includes an adhesive component 46 in the wall structure 4. In this embodiment, the adhesive component 46 is polyurethane adhesive. The adapter 312 is specifically disposed between the wall panel 41 and the insulation component 44, so that the insulation component 44 and the wall panel 41 can be bonded together, thereby further improving the fixing effect of the insulation component 44.

[0057] In one embodiment, such as Figure 2 As shown, the connecting assembly 31 includes a hanging rail 311, an adapter 312, and a drive unit 313. The hanging rail 311 is mounted on the floor slab and has a mounting cavity with a partial opening on one side. The drive unit 313 is mounted in the mounting cavity, and the drive end of the drive unit 313 extends out of the mounting cavity through the opening and is slidably connected to one end of the adapter 312. The other end of the adapter 312 is connected to a first support member 42.

[0058] The prefabricated intelligent electric partition system described above includes a connecting component 31 comprising a hanging rail 311, a converter 312, and a drive unit 313. In this embodiment, the hanging rail 311 and the converter 312 are a hanging rail and a sealing profile, respectively. The hanging rail 311 is mounted on the floor slab and has an installation cavity with a partial opening on one side. The drive unit 313 is mounted inside the installation cavity, and its drive end can extend out of the installation cavity through the opening and slide to one end of the converter 312. The other end of the converter 312 is connected to the first support member 42. Thus, the drive unit 313 can drive the converter 312 to move, and the converter 312 can drive the wall structure 4 to move synchronously.

[0059] In one embodiment, such as Figure 2 As shown, the adapter 312 has a sliding part, and the driving end of the driving unit 313 is rotatably disposed in the sliding part. When the driving end of the driving unit 313 rotates, the driving end of the driving unit 313 is adapted to drive the adapter 312 to move relative to the hanging rail 311 through the sliding part.

[0060] The prefabricated intelligent electric partition system described above uses a sliding part provided on the adapter 312. In this embodiment, the sliding part is a sliding groove. The driving end of the driving unit 313 is rotatably disposed on the sliding part, and the driving end of the driving unit 313 abuts against the inner wall surface of the sliding part. Thus, when the driving end of the driving unit 313 rotates, the driving end of the driving unit 313 can drive the adapter 312 to move through the friction between it and the inner wall surface of the sliding part.

[0061] In one embodiment, such as Figure 2 As shown, the drive unit 313 includes a drive member 3131 and a first rotating member 3132. The drive member 3131 is disposed in the mounting cavity, and the first rotating member 3132 is rotatably disposed in the sliding part. The drive end of the drive member 3131 is connected to the first rotating member 3132 through an opening.

[0062] The prefabricated intelligent electric partition system described above includes a drive unit 313 comprising a drive component 3131 and a first rotating component 3132. In this embodiment, the drive component 3131 and the first rotating component 3132 are respectively a drive motor and a first rotating wheel. The drive component 3131 is disposed in the mounting cavity, while the first rotating component 3132 is rotatably disposed in the sliding part. The peripheral side wall of the first rotating component 3132 abuts against the inner side wall of the sliding part. Simultaneously, the drive end of the drive component 3131 is connected to the first rotating component 3132 through an opening, so that when the drive end of the drive component 3131 drives the first rotating component 3132 to rotate, the adapter 312 can move.

[0063] In one embodiment, such as Figure 3 As shown, the second support member 43 has two accommodating cavities arranged opposite to each other; the connecting structure 3 also includes at least two second rotating members 33, each of which is disposed in an accommodating cavity and is tactilely connected to the limiting member 32.

[0064] The prefabricated intelligent electric partition system described above includes a second support member 43 with two oppositely arranged cavities and a connecting structure 3, which also includes two second rotating members 33. In this embodiment, the second rotating member 33 is a second rotating wheel. Each second rotating member 33 is disposed in a cavity and is rolledly connected to a limiting member 32. Thus, when the wall structure 4 moves, the second rotating member 33 can rotate relative to the limiting member 32, thereby converting the sliding friction between the second support member 43 and the limiting member 32 into rolling friction, which helps to improve the service life of the second support member 43 and the limiting member 32.

[0065] In one embodiment, such as Figure 2 and Figure 3 As shown, it also includes an edge sealing structure, which includes at least two first edge sealing members 51 and at least two second edge sealing members 52. The two first edge sealing members 51 are respectively disposed on both sides of the adapter 312, and the two second edge sealing members 52 are respectively disposed on both sides of the limiting member 32.

[0066] The prefabricated intelligent electric partition system described above uses edge sealing structures on both sides of the wall structure 4. The edge sealing structures specifically include two first edge sealing pieces 51 and two second edge sealing pieces 52. In this embodiment, the first edge sealing pieces 51 and the second edge sealing pieces 52 are respectively decorative cover plates and skirting boards. The two first edge sealing pieces 51 are respectively set on both sides of the adapter 312, thereby covering the adapter 312. The two second edge sealing pieces 52 are respectively set on both sides of the limiting piece 32, thereby covering the limiting piece 32. This helps to improve the external aesthetics of the partition system.

[0067] Although embodiments of the present invention have been described in conjunction with the accompanying drawings, those skilled in the art can make various modifications and variations without departing from the spirit and scope of the present invention, and such modifications and variations all fall within the scope defined by the appended claims.

Claims

1. A fabricated intelligent electric movable partition system, characterized in that, include: The connection structure (3) includes a connection component (31) and a limiting member (32). One end of the connection component (31) is connected to the floor slab, and the limiting member (32) is set on the floor (2). The connection component (31) and the limiting member (32) are respectively set. The wall structure (4) includes at least two wall panels (41) and a plurality of first support members (42). The two wall panels (41) are arranged at intervals relative to each other. All the first support members (42) are arranged between the two wall panels (41). At least two first support members (42) are arranged on opposite sides of the two wall panels (41). One of the first support members (42) is slidably connected to the connecting assembly (31), and the other first support member (42) is slidably connected to the limiting member (32). The wall structure (4) further includes a thermal insulation component (44) and a sound insulation component (45). The thermal insulation component (44) is disposed between the two wall panels (41) and connected to the first support component (42). The sound insulation component (45) is disposed on the first support component (42).

2. The assembled intelligent electric movable partition system according to claim 1, wherein, The wall structure (4) further includes several second support members (43), all of which are disposed between two wall panels (41), and at least two second support members (43) are disposed on the other opposite sides of the two wall panels (41); the second support members (43) are perpendicular to the first support member (42).

3. The assembled intelligent electric movable partition system according to claim 2, wherein, The side of the insulation component (44) is connected to the first support component (42) and the second support component (43) respectively.

4. The assembled intelligent electric movable partition system according to claim 3, characterized in that, The first support member (42) has a first receiving cavity, which is adapted to receive the sound insulation member (45); the second support member (43) has a second receiving cavity, which is adapted to receive the sound insulation member (45).

5. The assembled intelligent electric movable partition system according to claim 4, wherein, The wall structure (4) also includes an adhesive component (46), which is disposed between the wall panel (41) and the insulation component (44).

6. The assembled intelligent motorized partition system according to any one of claims 2-5, wherein, The connecting assembly (31) includes a hanging rail (311), an adapter (312), and a drive unit (313). The hanging rail (311) is disposed on the floor slab and has a mounting cavity with a partially open side. The drive unit (313) is disposed in the mounting cavity, and the drive end of the drive unit (313) extends out of the mounting cavity through the opening and is slidably connected to one end of the adapter (312). The other end of the adapter (312) is connected to a first support member (42).

7. The assembled intelligent motorized partition system of claim 6, wherein, The adapter (312) has a sliding part, and the driving end of the driving unit (313) is rotatably disposed in the sliding part. When the driving end of the driving unit (313) rotates, the driving end of the driving unit (313) is adapted to drive the adapter (312) to move relative to the hanging rail (311) through the sliding part.

8. The assembled intelligent motor partition wall system according to claim 7, characterized in that, The drive unit (313) includes a drive member (3131) and a first rotating member (3132). The drive member (3131) is disposed in the mounting cavity, and the first rotating member (3132) is rotatably disposed in the sliding part. The drive end of the drive member (3131) is connected to the first rotating member (3132) through the opening.

9. The assembled intelligent motorized partition system of claim 8, wherein, The second support member (43) has two accommodating cavities arranged opposite to each other; the connecting structure (3) further includes at least two second rotating members (33), each of which is disposed in one of the accommodating cavities and is tactilely connected to the limiting member (32).

10. The assembled intelligent motorized partition system of claim 9, wherein, It also includes an edge sealing structure, which includes at least two first edge sealing members (51) and at least two second edge sealing members (52). The two first edge sealing members (51) are respectively disposed on both sides of the adapter (312), and the two second edge sealing members (52) are respectively disposed on both sides of the limiting member (32).